<!DOCTYPE html>
<html class="client-nojs vector-feature-night-mode-disabled vector-feature-language-in-header-enabled vector-feature-language-in-main-page-header-disabled vector-feature-page-tools-pinned-disabled vector-feature-toc-pinned-clientpref-1 vector-feature-main-menu-pinned-disabled vector-feature-limited-width-clientpref-1 vector-feature-limited-width-content-enabled vector-feature-custom-font-size-clientpref-1 vector-feature-appearance-pinned-clientpref-1 vector-sticky-header-enabled" lang="en" dir="ltr"><head>
<meta charset="UTF-8">
<title>Human–robot interaction</title>
<meta name="viewport" content="width=device-width, initial-scale=1.0">
<link rel="canonical" href="https://en.wikipedia.org/wiki/Human%E2%80%93robot_interaction"> <link href="./mw/ext.cite.styles.css" rel="stylesheet" type="text/css">
<link href="./mw/skins.vector.icons.css" rel="stylesheet" type="text/css">
<link href="./mw/skins.vector.search.codex.styles.css" rel="stylesheet" type="text/css">
<link href="./mw/skins.vector.styles.css" rel="stylesheet" type="text/css">
<link href="./mw/user.styles.css" rel="stylesheet" type="text/css">
<meta name="ResourceLoaderDynamicStyles" content="">
<link rel="stylesheet" type="text/css" href="./mw/site.styles.css">
<link rel="stylesheet" type="text/css" href="./mw/noscript.css">
<link rel="stylesheet" type="text/css" href="./footer.css">
<link rel="stylesheet" type="text/css" href="./vector-2022.css">
</head>
<body class="skin--responsive skin-vector skin-vector-search-vue mediawiki ltr sitedir-ltr mw-hide-empty-elt ns-0 ns-subject page-Human–robot_interaction rootpage-Human–robot_interaction skin-vector-2022 action-view">
<div class="mw-page-container">
<div class="mw-page-container-inner">
<div class="mw-content-container">
<main id="content" class="mw-body">
<header class="mw-body-header vector-page-titlebar">
<h1 id="firstHeading" class="firstHeading mw-first-heading">
<span id="openzim-page-title" class="mw-page-title-main"><span class="mw-page-title-main">Human–robot interaction</span></span>
</h1>
</header>
<a id="top"></a>
<div id="bodyContent" class="vector-body ve-init-mw-desktopArticleTarget-targetContainer" aria-labelledby="firstHeading" data-mw-ve-target-container="">
<div id="mw-content-text" class="mw-body-content mw-content-ltr" lang="en" dir="ltr"><div class="mw-content-ltr mw-parser-output" lang="en" dir="ltr">
<style data-mw-deduplicate="TemplateStyles:r1251242444">
/* start https://en.wikipedia.org/ */
.mw-parser-output .ambox{border:1px solid #a2a9b1;border-left:10px solid #36c;background-color:#fbfbfb;box-sizing:border-box}.mw-parser-output .ambox+link+.ambox,.mw-parser-output .ambox+link+style+.ambox,.mw-parser-output .ambox+link+link+.ambox,.mw-parser-output .ambox+.mw-empty-elt+link+.ambox,.mw-parser-output .ambox+.mw-empty-elt+link+style+.ambox,.mw-parser-output .ambox+.mw-empty-elt+link+link+.ambox{margin-top:-1px}html body.mediawiki .mw-parser-output .ambox.mbox-small-left{margin:4px 1em 4px 0;overflow:hidden;width:238px;border-collapse:collapse;font-size:88%;line-height:1.25em}.mw-parser-output .ambox-speedy{border-left:10px solid #b32424;background-color:#fee7e6}.mw-parser-output .ambox-delete{border-left:10px solid #b32424}.mw-parser-output .ambox-content{border-left:10px solid #f28500}.mw-parser-output .ambox-style{border-left:10px solid #fc3}.mw-parser-output .ambox-move{border-left:10px solid #9932cc}.mw-parser-output .ambox-protection{border-left:10px solid #a2a9b1}.mw-parser-output .ambox .mbox-text{border:none;padding:0.25em 0.5em;width:100%}.mw-parser-output .ambox .mbox-image{border:none;padding:2px 0 2px 0.5em;text-align:center}.mw-parser-output .ambox .mbox-imageright{border:none;padding:2px 0.5em 2px 0;text-align:center}.mw-parser-output .ambox .mbox-empty-cell{border:none;padding:0;width:1px}.mw-parser-output .ambox .mbox-image-div{width:52px}@media(min-width:720px){.mw-parser-output .ambox{margin:0 10%}}@media print{body.ns-0 .mw-parser-output .ambox{display:none!important}}
/* end https://en.wikipedia.org/ */
</style>
<p><b>Human–robot interaction</b> (<b>HRI</b>) is the study of interactions between humans and robots. Human–robot interaction is a multidisciplinary field with contributions from <a href="Human%E2%80%93computer_interaction" title="Human–computer interaction">human–computer interaction</a>, <a href="Artificial_intelligence" title="Artificial intelligence">artificial intelligence</a>, <a href="Robotics" title="Robotics">robotics</a>, <a href="Natural_language_processing" title="Natural language processing">natural language processing</a>, <a href="Design" title="Design">design</a>, <a href="Psychology" title="Psychology">psychology</a> and <a href="Philosophy" title="Philosophy">philosophy</a>. A subfield known as physical human–robot interaction (pHRI) has tended to focus on device design to enable people to safely interact with robotic systems.<sup id="cite_ref-Kalinowska_1-0" class="reference"><a href="#cite_note-Kalinowska-1"><span class="cite-bracket">[</span>1<span class="cite-bracket">]</span></a></sup>
</p>
<meta property="mw:PageProp/toc">
<div class="mw-heading mw-heading2"><h2 id="Origins">Origins</h2></div>
<p>Human–robot interaction has been a topic of both science fiction and academic speculation even before any robots existed. Because much of active HRI development depends on <a href="Natural_language_processing" title="Natural language processing">natural language processing</a>, many aspects of HRI are continuations of <a href="Human_communication" title="Human communication">human communications</a>, a field of research which is much older than robotics.
</p><p>The origin of HRI as a discrete problem was stated by 20th-century author <a href="Isaac_Asimov" title="Isaac Asimov">Isaac Asimov</a> in 1941, in his novel <i>I, Robot</i>. Asimov coined <a href="Three_Laws_of_Robotics" title="Three Laws of Robotics">Three Laws of Robotics</a>, namely:
</p>
<ol><li>A robot may not injure a human being or, through inaction, allow a human being to come to harm.</li>
<li>A robot must obey the orders given it by human beings except where such orders would conflict with the First Law.</li>
<li>A robot must protect its own existence as long as such protection does not conflict with the First or Second Laws.<sup id="cite_ref-IROBOT_2-0" class="reference"><a href="#cite_note-IROBOT-2"><span class="cite-bracket">[</span>2<span class="cite-bracket">]</span></a></sup></li></ol>
<p>These three laws provide an overview of the goals engineers and researchers hold for safety in the HRI field, although the fields of <a href="Robot_ethics" title="Robot ethics">robot ethics</a> and <a href="Machine_ethics" title="Machine ethics">machine ethics</a> are more complex than these three principles. However, generally human–robot interaction prioritizes the safety of humans that interact with potentially dangerous robotics equipment. Solutions to this problem range from the philosophical approach of treating robots as ethical agents (individuals with <a href="Moral_agency" title="Moral agency">moral agency</a>), to the practical approach of creating safety zones. These safety zones use technologies such as <a href="Lidar" title="Lidar">lidar</a> to detect human presence or physical barriers to protect humans by preventing any contact between machine and operator.<sup id="cite_ref-3" class="reference"><a href="#cite_note-3"><span class="cite-bracket">[</span>3<span class="cite-bracket">]</span></a></sup>
</p><p>Although initially robots in the human–robot interaction field required some human intervention to function, research has expanded this to the extent that fully autonomous systems are now far more common than in the early 2000s.<sup id="cite_ref-scholtz_eval_methods_4-0" class="reference"><a href="#cite_note-scholtz_eval_methods-4"><span class="cite-bracket">[</span>4<span class="cite-bracket">]</span></a></sup> Autonomous systems include from <a href="Simultaneous_localization_and_mapping" title="Simultaneous localization and mapping">simultaneous localization and mapping</a> systems which provide intelligent robot movement to <a href="Natural_language_processing" title="Natural language processing">natural-language processing</a> and <a href="Natural_language_generation" title="Natural language generation">natural-language generation</a> systems which allow for natural, human-esque interaction which meet well-defined psychological benchmarks.<sup id="cite_ref-5" class="reference"><a href="#cite_note-5"><span class="cite-bracket">[</span>5<span class="cite-bracket">]</span></a></sup>
</p><p><a href="Anthropomorphism" title="Anthropomorphism">Anthropomorphic</a> robots (machines which imitate human body structure) are better described by the <a href="Biomimetic" class="mw-redirect" title="Biomimetic">biomimetics</a> field, but overlap with HRI in many research applications. Examples of robots which demonstrate this trend include <a href="Willow_Garage" title="Willow Garage">Willow Garage</a>'s <a href="PR2_robot" class="mw-redirect" title="PR2 robot">PR2 robot</a>, the <a href="NASA" title="NASA">NASA</a> <a href="Robonaut" title="Robonaut">Robonaut</a>, and <a href="Honda" title="Honda">Honda</a> <a href="ASIMO" title="ASIMO">ASIMO</a>. However, robots in the human–robot interaction field are not limited to human-like robots: <a href="Paro_(robot)" title="Paro (robot)">Paro</a> and <a href="Kismet_(robot)" title="Kismet (robot)">Kismet</a> are both robots designed to elicit emotional response from humans, and so fall into the category of human–robot interaction.<sup id="cite_ref-6" class="reference"><a href="#cite_note-6"><span class="cite-bracket">[</span>6<span class="cite-bracket">]</span></a></sup>
</p><p>Goals in HRI range from industrial manufacturing through <a href="Cobot" title="Cobot">Cobots</a>, medical technology through rehabilitation, autism intervention, and elder care devices, entertainment, human augmentation, and human convenience.<sup id="cite_ref-7" class="reference"><a href="#cite_note-7"><span class="cite-bracket">[</span>7<span class="cite-bracket">]</span></a></sup> Future research therefore covers a wide range of fields, much of which focuses on assistive robotics, robot-assisted search-and-rescue, and space exploration.<sup id="cite_ref-8" class="reference"><a href="#cite_note-8"><span class="cite-bracket">[</span>8<span class="cite-bracket">]</span></a></sup>
</p>
<div class="mw-heading mw-heading2"><h2 id="The_goal_of_friendly_human–robot_interactions">The goal of friendly human–robot interactions</h2></div>
<p>Robots are <a href="Artificial_agents" class="mw-redirect" title="Artificial agents">artificial agents</a> with capacities of perception and action in the physical world often referred by researchers as workspace. Their use has been generalized in factories but nowadays they tend to be found in the most technologically advanced societies in such critical domains as search and rescue, military battle, mine and bomb detection, scientific exploration, law enforcement, entertainment and hospital care.
</p><p>These new domains of applications imply a closer interaction with the user. The concept of closeness is to be taken in its full meaning, robots and humans share the workspace but also share goals in terms of task achievement. This close interaction needs new theoretical models, on one hand for the robotics scientists who work to improve the robots utility and safety and on the other hand to evaluate the risks and benefits of this new "friend" for our modern society. The subfield of physical human–robot interaction (pHRI) has largely focused on device design to enable people to safely interact with robotic systems, but is increasingly developing algorithmic approaches in an attempt to support fluent and expressive interactions between humans and robotic systems.<sup id="cite_ref-Kalinowska_1-1" class="reference"><a href="#cite_note-Kalinowska-1"><span class="cite-bracket">[</span>1<span class="cite-bracket">]</span></a></sup>
</p><p>With the advance in <a href="AI" class="mw-redirect" title="AI">AI</a>, the research is focusing on one part towards the safest physical interaction but also on a socially correct interaction, dependent on cultural criteria. The goal is to build an intuitive, and easy communication with the robot through speech, gestures, and facial expressions.
</p><p><a href="Kerstin_Dautenhahn" title="Kerstin Dautenhahn">Kerstin Dautenhahn</a> refers to friendly Human–robot interaction as "Robotiquette" defining it as the "social rules for robot behaviour (a 'robotiquette') that is comfortable and acceptable to humans"<sup id="cite_ref-9" class="reference"><a href="#cite_note-9"><span class="cite-bracket">[</span>9<span class="cite-bracket">]</span></a></sup> The robot has to adapt itself to our way of expressing desires and orders and not the contrary. But every day environments such as homes have much more complex social rules than those implied by factories or even military environments. Thus, the robot needs perceiving and understanding capacities to build dynamic models of its surroundings. It needs to <a href="Object_recognition" class="mw-redirect" title="Object recognition">categorize objects</a>, recognize and locate humans and further <a href="Emotion_recognition" title="Emotion recognition">recognize their emotions</a>. The need for dynamic capacities pushes forward every sub-field of robotics.
</p><p>Furthermore, by understanding and perceiving social cues, robots can enable collaborative scenarios with humans. For example, with the rapid rise of personal fabrication machines such as desktop <a href="3D_printing" title="3D printing">3D printers</a>, <a href="Laser_cutters" class="mw-redirect" title="Laser cutters">laser cutters</a>, etc., entering our homes, scenarios may arise where robots can collaboratively share control, co-ordinate and achieve tasks together. <a href="Industrial_robots" class="mw-redirect" title="Industrial robots">Industrial robots</a> have already been integrated into industrial assembly lines and are collaboratively working with humans. The social impact of such robots have been studied<sup id="cite_ref-10" class="reference"><a href="#cite_note-10"><span class="cite-bracket">[</span>10<span class="cite-bracket">]</span></a></sup> and has indicated that workers still treat robots and social entities, rely on social cues to understand and work together.
</p><p>On the other end of HRI research the <a href="Cognitive_model" title="Cognitive model">cognitive modelling</a> of the "relationship" between human and the robots benefits the psychologists and robotic researchers the user study are often of interests on both sides. This research endeavours part of human society. For effective <i>human – humanoid robot</i> interaction<sup id="cite_ref-11" class="reference"><a href="#cite_note-11"><span class="cite-bracket">[</span>11<span class="cite-bracket">]</span></a></sup> numerous communication skills<sup id="cite_ref-12" class="reference"><a href="#cite_note-12"><span class="cite-bracket">[</span>12<span class="cite-bracket">]</span></a></sup> and related features should be implemented in the design of such artificial agents/systems.
</p>
<div class="mw-heading mw-heading2"><h2 id="General_HRI_research">General HRI research</h2></div>
<p>HRI research spans a wide range of fields, some general to the nature of HRI.
</p>
<div class="mw-heading mw-heading3"><h3 id="Methods_for_perceiving_humans">Methods for perceiving humans</h3></div>
<p>Methods for perceiving humans in the environment are based on sensor information. Research on sensing components and software led by Microsoft provide useful results for extracting the human kinematics (see <a href="Kinect" title="Kinect">Kinect</a>). An example of older technique is to use colour information for example the fact that for light skinned people the hands are lighter than the clothes worn. In any case a human modelled a priori can then be fitted to the sensor data. The robot builds or has (depending on the level of autonomy the robot has) a 3D <a href="Robotic_mapping" title="Robotic mapping">mapping of its surroundings</a> to which is assigned the humans locations.
</p><p>Most methods intend to <a href="3D_reconstruction" title="3D reconstruction">build a 3D model</a> through <a href="Computer_vision" title="Computer vision">vision</a> of the environment. The <a href="Proprioception" title="Proprioception">proprioception</a> sensors permit the robot to have information over its own state. This information is relative to a reference. Theories of <a href="Proxemics" title="Proxemics">proxemics</a> may be used to perceive and plan around a person's personal space.
</p><p>A speech recognition system is used to interpret human desires or commands. By combining the information inferred by proprioception, sensor and speech the human position and state (standing, seated). In this matter, <a href="Natural_language_processing" title="Natural language processing">natural-language processing</a> is concerned with the interactions between computers and human (natural) languages, in particular how to program computers to process and analyze large amounts of <a href="Natural_language" title="Natural language">natural-language</a> data. For instance, neural-network architectures and learning algorithms that can be applied to various natural-language processing tasks including part-of-speech tagging, chunking, <a href="Named-entity_recognition" title="Named-entity recognition">named-entity recognition</a>, and <a href="Semantic_role_labeling" title="Semantic role labeling">semantic role labeling</a>.<sup id="cite_ref-13" class="reference"><a href="#cite_note-13"><span class="cite-bracket">[</span>13<span class="cite-bracket">]</span></a></sup>
</p>
<div class="mw-heading mw-heading3"><h3 id="Methods_for_motion_planning">Methods for motion planning</h3></div>
<p><a href="Motion_planning" title="Motion planning">Motion planning</a> in dynamic environments is a challenge that can at the moment only be achieved for robots with 3 to 10 <a href="Degrees_of_freedom_(mechanics)" title="Degrees of freedom (mechanics)">degrees of freedom</a>. Humanoid robots or even 2 armed robots, which can have up to 40 degrees of freedom, are unsuited for dynamic environments with today's technology. However lower-dimensional robots can use the potential field method to compute trajectories which avoid collisions with humans.
</p>
<div class="mw-heading mw-heading3"><h3 id="Cognitive_models_and_theory_of_mind">Cognitive models and theory of mind</h3></div>
<p>Humans exhibit negative social and emotional responses as well as decreased trust toward some robots that closely, but imperfectly, resemble humans; this phenomenon has been termed the "Uncanny Valley."<sup id="cite_ref-Mathur20162_14-0" class="reference"><a href="#cite_note-Mathur20162-14"><span class="cite-bracket">[</span>14<span class="cite-bracket">]</span></a></sup> However recent research in telepresence robots has established that mimicking human body postures and expressive gestures has made the robots likeable and engaging in a remote setting.<sup id="cite_ref-15" class="reference"><a href="#cite_note-15"><span class="cite-bracket">[</span>15<span class="cite-bracket">]</span></a></sup> Further, the presence of a human operator was felt more strongly when tested with an android or humanoid telepresence robot than with normal video communication through a monitor.<sup id="cite_ref-16" class="reference"><a href="#cite_note-16"><span class="cite-bracket">[</span>16<span class="cite-bracket">]</span></a></sup>
</p><p>While there is a growing body of research about users' perceptions and emotions towards robots, we are still far from a complete understanding. Only additional experiments will determine a more precise model.
</p><p>Based on past research, we have some indications about current user sentiment and behavior around robots:<sup id="cite_ref-17" class="reference"><a href="#cite_note-17"><span class="cite-bracket">[</span>17<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-18" class="reference"><a href="#cite_note-18"><span class="cite-bracket">[</span>18<span class="cite-bracket">]</span></a></sup>
</p>
<ul><li>During initial interactions, people are more uncertain, anticipate less social presence, and have fewer positive feelings when thinking about interacting with robots, and prefer to communicate with a human. This finding has been called the human-to-human interaction script.</li>
<li>It has been observed that when the robot performs a proactive behaviour and does not respect a "safety distance" (by penetrating the user space) the user sometimes expresses fear. This fear response is person-dependent.</li>
<li>It has also been shown that when a robot has no particular use, negative feelings are often expressed. The robot is perceived as useless and its presence becomes annoying.</li>
<li>People have also been shown to attribute personality characteristics to the robot that were not implemented in software.</li>
<li>People similarly infer the mental states of both humans and robots, except for when robots and humans use non-literal language (such as sarcasm or white lies).<sup id="cite_ref-19" class="reference"><a href="#cite_note-19"><span class="cite-bracket">[</span>19<span class="cite-bracket">]</span></a></sup></li>
<li>In line with the contact hypothesis,<sup id="cite_ref-20" class="reference"><a href="#cite_note-20"><span class="cite-bracket">[</span>20<span class="cite-bracket">]</span></a></sup> supervised exposure to a social robot can decrease uncertainty and increase willingness to interact with the robot, compared to pre-exposure attitudes toward robots as a class of agents.<sup id="cite_ref-21" class="reference"><a href="#cite_note-21"><span class="cite-bracket">[</span>21<span class="cite-bracket">]</span></a></sup></li>
<li>Interacting with a robot by looking at or touching the robot can reduce negative feelings that some people have about robots before interacting with them. Even imagined interaction can reduce negative feelings. However, in some cases, interacting with a robot can increase negative feelings for people with strong pre-existing negative sentiments towards robots.<sup id="cite_ref-22" class="reference"><a href="#cite_note-22"><span class="cite-bracket">[</span>22<span class="cite-bracket">]</span></a></sup></li></ul>
<div class="mw-heading mw-heading3"><h3 id="Methods_for_human–robot_coordination">Methods for human–robot coordination</h3></div>
<p>A large body of work in the field of human–robot interaction has looked at how humans and robots may better collaborate. The primary social cue for humans while collaborating is the shared perception of an activity, to this end researchers have investigated anticipatory robot control through various methods including: monitoring the behaviors of human partners using <a href="Eye_tracking" title="Eye tracking">eye tracking</a>, making inferences about human task intent, and proactive action on the part of the robot.<sup id="cite_ref-23" class="reference"><a href="#cite_note-23"><span class="cite-bracket">[</span>23<span class="cite-bracket">]</span></a></sup> The studies revealed that the anticipatory control helped users perform tasks faster than with reactive control alone.
</p><p>A common approach to program social cues into robots is to first study human–human behaviors and then transfer the learning.<sup id="cite_ref-24" class="reference"><a href="#cite_note-24"><span class="cite-bracket">[</span>24<span class="cite-bracket">]</span></a></sup> For example, coordination mechanisms in human–robot collaboration<sup id="cite_ref-25" class="reference"><a href="#cite_note-25"><span class="cite-bracket">[</span>25<span class="cite-bracket">]</span></a></sup> are based on work in neuroscience<sup id="cite_ref-26" class="reference"><a href="#cite_note-26"><span class="cite-bracket">[</span>26<span class="cite-bracket">]</span></a></sup> which examined how to enable joint action in human–human configuration by studying perception and action in a social context rather than in isolation. These studies have revealed that maintaining a shared representation of the task is crucial for accomplishing tasks in groups. For example, the authors have examined the task of driving together by separating responsibilities of acceleration and braking i.e., one person is responsible for accelerating and the other for braking; the study revealed that pairs reached the same level of performance as individuals only when they received feedback about the timing of each other's actions. Similarly, researchers have studied the aspect of human–human handovers with household scenarios like passing dining plates in order to enable an adaptive control of the same in human–robot handovers.<sup id="cite_ref-27" class="reference"><a href="#cite_note-27"><span class="cite-bracket">[</span>27<span class="cite-bracket">]</span></a></sup> Another study in the domain of <a href="Human_factors_and_ergonomics" class="mw-redirect" title="Human factors and ergonomics">Human Factors and Ergonomics</a> of human–human handovers in warehouses and supermarkets reveal that Givers and Receivers perceive handover tasks differently which has significant implications for designing user-centric <a href="Human%E2%80%93robot_collaboration" title="Human–robot collaboration">human–robot collaborative</a> systems.<sup id="cite_ref-28" class="reference"><a href="#cite_note-28"><span class="cite-bracket">[</span>28<span class="cite-bracket">]</span></a></sup> Most recently, researchers have studied a system that automatically distributes assembly tasks among co-located workers to improve co-ordination.<sup id="cite_ref-29" class="reference"><a href="#cite_note-29"><span class="cite-bracket">[</span>29<span class="cite-bracket">]</span></a></sup>
</p>
<div class="mw-heading mw-heading3"><h3 id="Robots_used_for_research_in_HRI">Robots used for research in HRI</h3></div>
<p>Some research involved designing a new robot while others use available robots to conduct study. Some commonly used robots are <a href="Nao_(robot)" title="Nao (robot)">Nao</a>, a humanoid and programmable robot, <a href="Pepper_(robot)" title="Pepper (robot)">Pepper</a> and <a href="Furhat" title="Furhat">Furhat</a>, two other social humanoid robots, and <a rel="nofollow" class="external text" href="https://www.mistyrobotics.com/">Misty</a>, a programmable companion robot.
</p>
<div class="mw-heading mw-heading4"><h4 id="Color">Color</h4></div>
<p>The majority of robots are of a white color, stemming from a bias against robots of other colors.<sup id="cite_ref-30" class="reference"><a href="#cite_note-30"><span class="cite-bracket">[</span>30<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-31" class="reference"><a href="#cite_note-31"><span class="cite-bracket">[</span>31<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-32" class="reference"><a href="#cite_note-32"><span class="cite-bracket">[</span>32<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-33" class="reference"><a href="#cite_note-33"><span class="cite-bracket">[</span>33<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-34" class="reference"><a href="#cite_note-34"><span class="cite-bracket">[</span>34<span class="cite-bracket">]</span></a></sup>
</p>
<div class="mw-heading mw-heading2"><h2 id="Application_areas">Application areas</h2></div>
<p>The application areas of human–robot interaction include robotic technologies that are used by humans for industry, medicine, and companionship, among other purposes.
</p>
<div class="mw-heading mw-heading3"><h3 id="Industrial_robots">Industrial robots</h3></div>
<p><a href="Industrial_robot" title="Industrial robot">Industrial robots</a> have been implemented to collaborate with humans to perform industrial manufacturing tasks. While humans have the flexibility and the intelligence to consider different approaches to solve the problem, choose the best option among all choices, and then command robots to perform assigned tasks, robots are able to be more precise and more consistent in performing repetitive and dangerous work.<sup id="cite_ref-:0_35-0" class="reference"><a href="#cite_note-:0-35"><span class="cite-bracket">[</span>35<span class="cite-bracket">]</span></a></sup> Together, the collaboration of industrial robots and humans demonstrates that robots have the capabilities to ensure efficiency of <a href="Manufacturing" title="Manufacturing">manufacturing</a> and assembling.<sup id="cite_ref-:0_35-1" class="reference"><a href="#cite_note-:0-35"><span class="cite-bracket">[</span>35<span class="cite-bracket">]</span></a></sup> However, there are persistent concerns about the safety of human–robot collaboration, since industrial robots have the ability to move heavy objects and operate often dangerous and sharp tools, quickly and with force. As a result, this presents a potential threat to the people who work in the same workspace.<sup id="cite_ref-:0_35-2" class="reference"><a href="#cite_note-:0-35"><span class="cite-bracket">[</span>35<span class="cite-bracket">]</span></a></sup> Therefore, the planning of safe and effective layouts for collaborative workplaces is one of the most challenging topics that research faces.<sup id="cite_ref-36" class="reference"><a href="#cite_note-36"><span class="cite-bracket">[</span>36<span class="cite-bracket">]</span></a></sup>
</p>
<div class="mw-heading mw-heading3"><h3 id="Medical_robots">Medical robots</h3></div>
<div class="mw-heading mw-heading4"><h4 id="Rehabilitation">Rehabilitation</h4></div>
<p>A <a href="Rehabilitation_robotics" title="Rehabilitation robotics">rehabilitation robot</a> is an example of a robot-aided system implemented in <a href="Health_care" title="Health care">health care</a>. This type of robot would aid <a href="Stroke" title="Stroke">stroke</a> survivors or individuals with neurological impairment to recover their hand and finger movements.<sup id="cite_ref-:1_37-0" class="reference"><a href="#cite_note-:1-37"><span class="cite-bracket">[</span>37<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-:2_38-0" class="reference"><a href="#cite_note-:2-38"><span class="cite-bracket">[</span>38<span class="cite-bracket">]</span></a></sup> In the past few decades, the idea of how human and robot interact with each other is one factor that has been widely considered in the design of rehabilitation robots.<sup id="cite_ref-:2_38-1" class="reference"><a href="#cite_note-:2-38"><span class="cite-bracket">[</span>38<span class="cite-bracket">]</span></a></sup> For instance, human–robot interaction plays an important role in designing <a href="Exoskeleton" title="Exoskeleton">exoskeleton</a> rehabilitation robots since the exoskeleton system makes direct contact with humans' body.<sup id="cite_ref-:1_37-1" class="reference"><a href="#cite_note-:1-37"><span class="cite-bracket">[</span>37<span class="cite-bracket">]</span></a></sup>
</p>
<div class="mw-heading mw-heading4"><h4 id="Elder_care_and_companion_robot">Elder care and companion robot</h4></div>
<p>Nursing robots are aimed to provide assistance to <a href="Elderly" class="mw-redirect" title="Elderly">elderly</a> people who may have faced a decline in physical and <a href="Cognition" title="Cognition">cognitive</a> function, and, consequently, developed <a href="Psychosocial" title="Psychosocial">psychosocial</a> issues.<sup id="cite_ref-:3_39-0" class="reference"><a href="#cite_note-:3-39"><span class="cite-bracket">[</span>39<span class="cite-bracket">]</span></a></sup> By assisting in daily physical activities, physical assistance from the robots would allow the elderly to have a sense of <a href="Autonomy" title="Autonomy">autonomy</a> and feel that they are still able to take care of themselves and stay in their own homes.<sup id="cite_ref-:3_39-1" class="reference"><a href="#cite_note-:3-39"><span class="cite-bracket">[</span>39<span class="cite-bracket">]</span></a></sup>
</p><p>Long-term research on human-robot interaction could show that residents of care home are willing to interact with humanoid robots and benefit from cognitive and physical activation that is led by the robot Pepper.<sup id="cite_ref-40" class="reference"><a href="#cite_note-40"><span class="cite-bracket">[</span>40<span class="cite-bracket">]</span></a></sup> Another long-term study in a care home could show that people working in the care sector are willing to use robots in their daily work with the residents.<sup id="cite_ref-:49_41-0" class="reference"><a href="#cite_note-:49-41"><span class="cite-bracket">[</span>41<span class="cite-bracket">]</span></a></sup> But it also revealed that even though that the robots are ready to be used, they do need human assistants, they cannot replace the human work force but they can assist them and give them new possibilities.<sup id="cite_ref-:49_41-1" class="reference"><a href="#cite_note-:49-41"><span class="cite-bracket">[</span>41<span class="cite-bracket">]</span></a></sup> In addition to supporting care recipients, robots are also being studied as a source of support for their caregivers. A study found that informal caregivers who engaged in repeated self-disclosure to a social robot experienced reduced stress and loneliness, improved mood, and greater acceptance of their caregiving roles, suggesting potential benefits of social robots as emotional support tools for caregivers.<sup id="cite_ref-42" class="reference"><a href="#cite_note-42"><span class="cite-bracket">[</span>42<span class="cite-bracket">]</span></a></sup>
</p>
<div class="mw-heading mw-heading3"><h3 id="Social_robots">Social robots</h3></div>
<div class="mw-heading mw-heading4"><h4 id="Autism_intervention">Autism intervention</h4></div>
<p>Over the past decade, human–robot interaction has shown promising outcomes in autism intervention.<sup id="cite_ref-:4_44-0" class="reference"><a href="#cite_note-:4-44"><span class="cite-bracket">[</span>44<span class="cite-bracket">]</span></a></sup> Children with <a href="Autism_Spectrum_Disorders" class="mw-redirect" title="Autism Spectrum Disorders">autism spectrum disorders</a> (ASD) are more likely to connect with robots than humans, and using <a href="Social_robot" title="Social robot">social robots</a> is considered to be a beneficial approach to help these children with ASD.<sup id="cite_ref-:4_44-1" class="reference"><a href="#cite_note-:4-44"><span class="cite-bracket">[</span>44<span class="cite-bracket">]</span></a></sup>
</p><p>However, social robots that are used to intervene in children's ASD are not viewed as viable treatment by clinical communities because the study of using social robots in ASD intervention, often, does not follow standard research protocol.<sup id="cite_ref-:4_44-2" class="reference"><a href="#cite_note-:4-44"><span class="cite-bracket">[</span>44<span class="cite-bracket">]</span></a></sup> In addition, the outcome of the research could not demonstrate a consistent positive effect that could be considered as <a href="Evidence-based_practice" title="Evidence-based practice">evidence-based practice</a> (EBP) based on the clinical systematic evaluation.<sup id="cite_ref-:4_44-3" class="reference"><a href="#cite_note-:4-44"><span class="cite-bracket">[</span>44<span class="cite-bracket">]</span></a></sup> As a result, the researchers have started to establish guidelines which suggest how to conduct studies with robot-mediated intervention and hence produce reliable data that could be treated as EBP that would allow clinicians to choose to use robots in ASD intervention.<sup id="cite_ref-:4_44-4" class="reference"><a href="#cite_note-:4-44"><span class="cite-bracket">[</span>44<span class="cite-bracket">]</span></a></sup>
</p><p><br>
<b>Education robots</b>
</p><p>Robots can become tutors or peers in the classroom.<sup id="cite_ref-45" class="reference"><a href="#cite_note-45"><span class="cite-bracket">[</span>45<span class="cite-bracket">]</span></a></sup> When acting as a tutor, the robot can provide instruction, information and also individual attention to student. When acting as a peer learner, the robot can enable "learning by teaching" for students.<sup id="cite_ref-46" class="reference"><a href="#cite_note-46"><span class="cite-bracket">[</span>46<span class="cite-bracket">]</span></a></sup>
</p>
<div class="mw-heading mw-heading4"><h4 id="Rehabilitation_2">Rehabilitation</h4></div>
<p>Robots can be configured as collaborative robot and can be used for rehabilitation of users with motor impairment. Using various interactive technologies like automatic <a href="Speech_recognition" title="Speech recognition">speech recognition</a>, eye gaze tracking and so on, users with motor impairment can control robotic agents and use it for rehabilitation activities like powered wheelchair control, object manipulation and so on.
</p>
<div class="mw-heading mw-heading3"><h3 id="Automatic_driving">Automatic driving</h3></div>
<p>A specific example of human–robot interaction is the human-vehicle interaction in automated driving. The goal of human-vehicle cooperation is to ensure safety, security, and comfort in <a href="Automated_driving_system" class="mw-redirect" title="Automated driving system">automated driving systems</a>.<sup id="cite_ref-Biondi_932–946_47-0" class="reference"><a href="#cite_note-Biondi_932–946-47"><span class="cite-bracket">[</span>47<span class="cite-bracket">]</span></a></sup> The continued improvement in this system and the progress in advancements towards highly and fully automated vehicles aim to make the driving experience safer and more efficient in which humans do not need to intervene in the driving process when there is an unexpected driving condition such as a pedestrian walking across the street when it is not supposed to.<sup id="cite_ref-Biondi_932–946_47-1" class="reference"><a href="#cite_note-Biondi_932–946-47"><span class="cite-bracket">[</span>47<span class="cite-bracket">]</span></a></sup>
</p>
<div class="mw-heading mw-heading3"><h3 id="Search_and_rescue">Search and rescue</h3></div>
<p><a href="Unmanned_aerial_vehicle" title="Unmanned aerial vehicle">Unmanned aerial vehicles</a> (UAV) and <a href="Unmanned_underwater_vehicle" title="Unmanned underwater vehicle">unmanned underwater vehicles</a> (UUV) have the potential to assist search and rescue work in <a href="Wilderness_area" class="mw-redirect" title="Wilderness area">wilderness areas</a>, such as locating a missing person remotely from the evidence that they left in surrounding areas.<sup id="cite_ref-:5_48-0" class="reference"><a href="#cite_note-:5-48"><span class="cite-bracket">[</span>48<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-:6_49-0" class="reference"><a href="#cite_note-:6-49"><span class="cite-bracket">[</span>49<span class="cite-bracket">]</span></a></sup> The system integrates autonomy and information, such as <a href="Coverage_map" title="Coverage map">coverage maps</a>, GPS information and quality search video, to support humans performing the <a href="Search_and_rescue" title="Search and rescue">search and rescue</a> work efficiently in the given limited time.<sup id="cite_ref-:5_48-1" class="reference"><a href="#cite_note-:5-48"><span class="cite-bracket">[</span>48<span class="cite-bracket">]</span></a></sup><sup id="cite_ref-:6_49-1" class="reference"><a href="#cite_note-:6-49"><span class="cite-bracket">[</span>49<span class="cite-bracket">]</span></a></sup>
</p>
<div class="mw-heading mw-heading3"><h3 id="Space_exploration">Space exploration</h3></div>
<p>Humans have been working on achieving the next breakthrough in space exploration, such as a crewed mission to Mars.<sup id="cite_ref-:7_50-0" class="reference"><a href="#cite_note-:7-50"><span class="cite-bracket">[</span>50<span class="cite-bracket">]</span></a></sup> This challenge identified the need for developing planetary rovers that are able to assist astronauts and support their operations during their mission.<sup id="cite_ref-:7_50-1" class="reference"><a href="#cite_note-:7-50"><span class="cite-bracket">[</span>50<span class="cite-bracket">]</span></a></sup> The collaboration between rovers, UAVs, and humans enables leveraging capabilities from all sides and optimizes task performance.<sup id="cite_ref-:7_50-2" class="reference"><a href="#cite_note-:7-50"><span class="cite-bracket">[</span>50<span class="cite-bracket">]</span></a></sup>
</p>
<div class="mw-heading mw-heading3"><h3 id="Agricultural_robots">Agricultural robots</h3></div>
<p>Human labor has been greatly used in agriculture but <a href="Agricultural_robot#Applications" title="Agricultural robot">Agricultural robots</a> like milking robots have been adopted in large-scale farming. Hygiene is the main issue in the agri-food sector and the invention of this technology has widely impacted agriculture. Robots can also be used in tasks that might be hazardous to human health like in the application of chemicals to plants.<sup id="cite_ref-51" class="reference"><a href="#cite_note-51"><span class="cite-bracket">[</span>51<span class="cite-bracket">]</span></a></sup>
</p>
<div style="clear:both;" class=""></div>
<div class="mw-heading mw-heading2"><h2 id="See_also">See also</h2></div>
<div class="mw-heading mw-heading3"><h3 id="Robotics">Robotics</h3></div>
<style data-mw-deduplicate="TemplateStyles:r1184024115">
/* start https://en.wikipedia.org/ */
.mw-parser-output .div-col{margin-top:0.3em;column-width:30em}.mw-parser-output .div-col-small{font-size:90%}.mw-parser-output .div-col-rules{column-rule:1px solid #aaa}.mw-parser-output .div-col dl,.mw-parser-output .div-col ol,.mw-parser-output .div-col ul{margin-top:0}.mw-parser-output .div-col li,.mw-parser-output .div-col dd{page-break-inside:avoid;break-inside:avoid-column}
/* end https://en.wikipedia.org/ */
</style><div class="div-col" style="column-width: 18em;">
<ul><li><a href="Autonomous_robot" title="Autonomous robot">Autonomous robots</a></li>
<li><a href="Cobot" title="Cobot">Cobots</a></li>
<li><a href="Gesture_recognition" title="Gesture recognition">Gesture recognition</a></li>
<li><a href="Humanoid_robot" title="Humanoid robot">Humanoid robots</a></li>
<li><a href="Human%E2%80%93robot_collaboration" title="Human–robot collaboration">Human–robot collaboration</a></li>
<li><a href="Mobile_robot" title="Mobile robot">Mobile robots</a></li>
<li><a href="Motion_planning" title="Motion planning">Motion planning</a></li>
<li><a href="Personal_robot" title="Personal robot">Personal robot</a></li>
<li><a href="Robot_simulations" class="mw-redirect" title="Robot simulations">Robot simulations</a></li>
<li><a href="Robot_teams" class="mw-redirect" title="Robot teams">Robot teams</a></li>
<li><a href="Social_robot" title="Social robot">Social robot</a></li></ul>
</div>
<div class="mw-heading mw-heading3"><h3 id="Technology">Technology</h3></div>
<div class="div-col" style="column-width: 18em;">
<ul><li><a href="Artificial_intelligence" title="Artificial intelligence">Artificial intelligence</a></li>
<li><a href="CAPTCHA" title="CAPTCHA">CAPTCHA</a></li>
<li><a href="Computer_supported_collaborative_work" class="mw-redirect" title="Computer supported collaborative work">Computer supported collaborative work</a></li>
<li><a href="Dialog_management" class="mw-redirect" title="Dialog management">Dialog management</a></li>
<li><a href="Face_detection" title="Face detection">Face detection</a></li>
<li><a href="Haptic_technology" title="Haptic technology">Haptic technology</a></li>
<li><a href="Human%E2%80%93computer_interaction" title="Human–computer interaction">Human–computer interaction</a></li>
<li><a href="Interactive_Systems_Engineering" class="mw-redirect" title="Interactive Systems Engineering">Interactive Systems Engineering</a></li>
<li><a href="Multimodal_interaction" title="Multimodal interaction">Multimodal interaction</a></li>
<li><a href="Natural-language_understanding" class="mw-redirect" title="Natural-language understanding">Natural-language understanding</a></li>
<li><a href="Telematics" title="Telematics">Telematics</a></li>
<li><a href="Facial_recognition_system" title="Facial recognition system">Face recognition</a></li>
<li><a href="Human_sensing" title="Human sensing">Human sensing</a></li></ul>
</div>
<div class="mw-heading mw-heading3"><h3 id="Psychology">Psychology</h3></div>
<ul><li>Anthropomorphism and the <a href="Uncanny_valley" title="Uncanny valley">uncanny valley</a></li></ul>
<div class="mw-heading mw-heading3"><h3 id="Properties">Properties</h3></div>
<p>Bartneck and Okada<sup id="cite_ref-52" class="reference"><a href="#cite_note-52"><span class="cite-bracket">[</span>52<span class="cite-bracket">]</span></a></sup> suggest that a robotic user interface can be described by the following four properties:
</p>
<dl><dt>Tool – toy scale</dt></dl>
<ul><li>Is the system designed to solve a problem effectively or is it just for entertainment?</li></ul>
<dl><dt><a href="Remote_control" title="Remote control">Remote control</a> – autonomous scale</dt></dl>
<ul><li>Does the robot require remote control or is it capable of action without direct human influence?</li></ul>
<dl><dt>Reactive – dialogue scale</dt></dl>
<ul><li>Does the robot rely on a fixed interaction pattern or is it able to have dialogue — exchange of information — with a human?</li></ul>
<dl><dt>Anthropomorphism scale</dt></dl>
<ul><li>Does it have the shape or properties of a human?</li></ul>
<div class="mw-heading mw-heading3"><h3 id="Conferences">Conferences</h3></div>
<div class="mw-heading mw-heading4"><h4 id="ACE_–_International_Conference_on_Future_Applications_of_AI,_Sensors,_and_Robotics_in_Society">ACE – International Conference on Future Applications of AI, Sensors, and Robotics in Society</h4></div>
<p>The International Conference on Future Applications of AI, Sensors, and Robotics in Society explore the state of the art research, highlighting the future challenges as well as the hidden potential behind the technologies. The accepted contributions to this conference will be published annually in the special edition of the Journal of Future Robot Life.
</p>
<div class="mw-heading mw-heading4"><h4 id="International_Conference_on_Social_Robotics">International Conference on Social Robotics</h4></div>
<p>The International Conference on Social Robotics is a conference for scientists, researchers, and practitioners to report and discuss the latest progress of their forefront research and findings in social robotics, as well as interactions with human beings and integration into our society.
</p>
<ul><li>ICSR2009, Incheon, Korea in collaboration with the FIRA RoboWorld Congress</li>
<li>ICSR2010, Singapore</li>
<li>ICSR2011, Amsterdam, Netherlands</li></ul>
<div class="mw-heading mw-heading4"><h4 id="International_Conference_on_Human–Robot_Personal_Relationships">International Conference on Human–Robot Personal Relationships</h4></div>
<ul><li>HRPR2008, Maastricht</li>
<li>HRPR 2009, Tilburg. Keynote speaker was <a href="Hiroshi_Ishiguro" title="Hiroshi Ishiguro">Hiroshi Ishiguro</a>.</li>
<li>HRPR2010, Leiden. Keynote speaker was <a href="Kerstin_Dautenhahn" title="Kerstin Dautenhahn">Kerstin Dautenhahn</a>.</li></ul>
<div class="mw-heading mw-heading4"><h4 id="International_Congress_on_Love_and_Sex_with_Robots">International Congress on Love and Sex with Robots</h4></div>
<p>The International Congress on Love and Sex with Robots is an annual congress that invites and encourages a broad range of topics, such as AI, Philosophy, Ethics, Sociology, Engineering, Computer Science, Bioethics.
</p><p>The earliest academic papers on the subject were presented at the 2006 E.C. Euron Roboethics Atelier, organized by the School of Robotics in Genoa, followed a year later by the first book – "Love and Sex with Robots" – published by Harper Collins in New York. Since that initial flurry of academic activity in this field the subject has grown significantly in breadth and worldwide interest. Three conferences on Human–Robot Personal Relationships were held in the Netherlands during the period 2008–2010, in each case the proceedings were published by respected academic publishers, including Springer-Verlag. After a gap until 2014 the conferences were renamed as the "International Congress on Love and Sex with Robots", which have previously taken place at the University of Madeira in 2014; in London in 2016 and 2017; and in Brussels in 2019. Additionally, the Springer-Verlag "International Journal of Social Robotics", had, by 2016, published articles mentioning the subject, and an open access journal called "Lovotics" was launched in 2012, devoted entirely to the subject. The past few years have also witnessed a strong upsurge of interest by way of increased coverage of the subject in the print media, TV documentaries and feature films, as well as within the academic community.
</p><p>The International Congress on Love and Sex with Robots provides an excellent opportunity for academics and industry professionals to present and discuss their innovative work and ideas in an academic symposium.
</p>
<ul><li>2020, Berlin, Germany</li>
<li>2019, Brussels, Belgium</li>
<li>2017, London, United Kingdom</li>
<li>2016, London, United Kingdom</li>
<li>2014, Madeira, Portugal</li></ul>
<div class="mw-heading mw-heading4"><h4 id="International_Symposium_on_New_Frontiers_in_Human–Robot_Interaction">International Symposium on New Frontiers in Human–Robot Interaction</h4></div>
<p>This symposium is organized in collaboration with the Annual Convention of the Society for the Study of Artificial Intelligence and Simulation of Behaviour.
</p>
<ul><li>2015, Canterbury, United Kingdom</li>
<li>2014, London, United Kingdom</li>
<li>2010, Leicester, United Kingdom</li>
<li>2009, Edinburgh, United Kingdom</li></ul>
<div class="mw-heading mw-heading4"><h4 id="IEEE_International_Symposium_in_Robot_and_Human_Interactive_Communication">IEEE International Symposium in Robot and Human Interactive Communication</h4></div>
<p>The IEEE International Symposium on Robot and Human Interactive Communication ( RO-MAN ) was founded in 1992 by Profs. Toshio Fukuda, Hisato Kobayashi, Hiroshi Harashima and Fumio Hara. Early workshop participants were mostly Japanese, and the first seven workshops were held in Japan. Since 1999, workshops have been held in Europe and the United States as well as Japan, and participation has been of international scope.
</p>
<div class="mw-heading mw-heading4"><h4 id="ACM/IEEE_International_Conference_on_Human–Robot_Interaction">ACM/IEEE International Conference on Human–Robot Interaction</h4></div>
<style data-mw-deduplicate="TemplateStyles:r1236090951">
/* start https://en.wikipedia.org/ */
.mw-parser-output .hatnote{font-style:italic}.mw-parser-output div.hatnote{padding-left:1.6em;margin-bottom:0.5em}.mw-parser-output .hatnote i{font-style:normal}.mw-parser-output .hatnote+link+.hatnote{margin-top:-0.5em}@media print{body.ns-0 .mw-parser-output .hatnote{display:none!important}}
/* end https://en.wikipedia.org/ */
</style><div role="note" class="hatnote navigation-not-searchable">Main article: <a href="International_Conference_on_Human%E2%80%93Robot_Interaction" title="International Conference on Human–Robot Interaction">International Conference on Human–Robot Interaction</a></div>
<p>This conference is amongst the best conferences in the field of HRI and has a very selective reviewing process. The average acceptance rate is 26% and the average attendance is 187. Around 65% of the contributions to the conference come from the US and the high level of quality of the submissions to the conference becomes visible by the average of 10 citations that the HRI papers attracted so far.<sup id="cite_ref-53" class="reference"><a href="#cite_note-53"><span class="cite-bracket">[</span>53<span class="cite-bracket">]</span></a></sup>
</p>
<ul><li>HRI 2006 in <a href="Salt_Lake_City" title="Salt Lake City">Salt Lake City</a>, Utah, USA, Acceptance Rate: 0.29</li>
<li>HRI 2007 in <a href="Washington%2C_D.C." title="Washington, D.C.">Washington, D.C.</a>, USA, Acceptance Rate: 0.23</li>
<li>HRI 2008 in <a href="Amsterdam" title="Amsterdam">Amsterdam</a>, Netherlands, Acceptance Rate: 0.36 (0.18 for oral presentations)</li>
<li>HRI 2009 in <a href="San_Diego" title="San Diego">San Diego</a>, CA, USA, Acceptance Rate: 0.19</li>
<li>HRI 2010 in <a href="Osaka" title="Osaka">Osaka</a>, Japan, Acceptance Rate: 0.21</li>
<li>HRI 2011 in <a href="Lausanne" title="Lausanne">Lausanne</a>, Switzerland, Acceptance Rate: 0.22 for full papers</li>
<li>HRI 2012 in <a href="Boston" title="Boston">Boston</a>, Massachusetts, USA, Acceptance Rate: 0.25 for full papers</li>
<li>HRI 2013 in <a href="Tokyo" title="Tokyo">Tokyo</a>, Japan, Acceptance Rate: 0.24 for full papers</li>
<li>HRI 2014 in <a href="Bielefeld" title="Bielefeld">Bielefeld</a>, Germany, Acceptance Rate: 0.24 for full papers</li>
<li>HRI 2015 in <a href="Portland%2C_Oregon" title="Portland, Oregon">Portland, Oregon</a>, USA, Acceptance Rate: 0.25 for full papers</li>
<li>HRI 2016 in <a href="Christchurch" title="Christchurch">Christchurch</a>, New Zealand, Acceptance Rate: 0.25 for full papers</li>
<li>HRI 2017 in <a href="Vienna" title="Vienna">Vienna</a>, Austria, Acceptance Rate: 0.24 for full papers</li>
<li>HRI 2018 in <a href="Chicago" title="Chicago">Chicago</a>, USA, Acceptance Rate: 0.24 for full papers</li>
<li>HRI 2021 in <a href="Boulder%2C_Colorado" title="Boulder, Colorado">Boulder</a>, USA, Acceptance Rate: 0.23 for full papers</li></ul>
<div class="mw-heading mw-heading4"><h4 id="International_Conference_on_Human–Agent_Interaction">International Conference on Human–Agent Interaction</h4></div>
<ul><li>HAI 2013 in <a href="Sapporo" title="Sapporo">Sapporo</a>, Japan</li>
<li>HAI 2014 in <a href="Tsukuba" title="Tsukuba">Tsukuba</a>, Japan</li>
<li>HAI 2015 in <a href="Daegu" title="Daegu">Daegu</a>, Korea</li>
<li>HAI 2016 in Singapore</li>
<li>HAI 2017 in <a href="Bielefeld" title="Bielefeld">Bielefeld</a>, Germany</li></ul>
<div class="mw-heading mw-heading4"><h4 id="Related_conferences">Related conferences</h4></div>
<p>There are many conferences that are not exclusively HRI, but deal with broad aspects of HRI, and often have HRI papers presented.
</p>
<ul><li>IEEE-RAS/RSJ International Conference on Humanoid Robots (Humanoids)</li>
<li>Ubiquitous Computing (UbiComp)</li>
<li>IEEE/RSJ International Conference on Intelligent Robots and Systems (IROS)</li>
<li>Intelligent User Interfaces (IUI)</li>
<li>Computer Human Interaction (CHI)</li>
<li>American Association for Artificial Intelligence (AAAI)</li>
<li>INTERACT</li></ul>
<div class="mw-heading mw-heading3"><h3 id="Journals">Journals</h3></div>
<p>There are currently two dedicated HRI Journals
</p>
<ul><li><i>ACM Transactions on Human–Robot Interaction</i> (Originally Journal of Human–Robot Interaction)</li>
<li><i>International Journal of Social Robotics</i></li></ul>
<p>and there are several more general journals in which one will find HRI articles.
</p>
<ul><li><i><a href="International_Journal_of_Humanoid_Robotics" title="International Journal of Humanoid Robotics">International Journal of Humanoid Robotics</a></i></li>
<li>‘Entertainment robotics’ section of the <i>Entertainment Computing Journal</i></li>
<li><i>Interaction Studies Journal</i></li>
<li><a href="Artificial_Intelligence_(journal)" title="Artificial Intelligence (journal)"><i>Artificial Intelligence</i></a></li>
<li><i>Systems, Man and Cybernetics</i></li></ul>
<div class="mw-heading mw-heading3"><h3 id="Books">Books</h3></div>
<p>There are several books available that specialise on Human–Robot Interaction. While there are several edited books, only a few dedicated texts are available:
</p>
<ul><li><style data-mw-deduplicate="TemplateStyles:r1238218222">
/* start https://en.wikipedia.org/ */
.mw-parser-output cite.citation{font-style:inherit;word-wrap:break-word}.mw-parser-output .citation q{quotes:"\"""\"""'""'"}.mw-parser-output .citation:target{background-color:rgba(0,127,255,0.133)}.mw-parser-output .id-lock-free.id-lock-free a{background:url("./mw/Lock-green.svg")right 0.1em center/9px no-repeat}.mw-parser-output .id-lock-limited.id-lock-limited a,.mw-parser-output .id-lock-registration.id-lock-registration a{background:url("./mw/Lock-gray-alt-2.svg")right 0.1em center/9px no-repeat}.mw-parser-output .id-lock-subscription.id-lock-subscription a{background:url("./mw/Lock-red-alt-2.svg")right 0.1em center/9px no-repeat}.mw-parser-output .cs1-ws-icon a{background:url("./mw/Wikisource-logo.svg")right 0.1em center/12px no-repeat}body:not(.skin-timeless):not(.skin-minerva) .mw-parser-output .id-lock-free a,body:not(.skin-timeless):not(.skin-minerva) .mw-parser-output .id-lock-limited a,body:not(.skin-timeless):not(.skin-minerva) .mw-parser-output .id-lock-registration a,body:not(.skin-timeless):not(.skin-minerva) .mw-parser-output .id-lock-subscription a,body:not(.skin-timeless):not(.skin-minerva) .mw-parser-output .cs1-ws-icon a{background-size:contain;padding:0 1em 0 0}.mw-parser-output .cs1-code{color:inherit;background:inherit;border:none;padding:inherit}.mw-parser-output .cs1-hidden-error{display:none;color:var(--color-error,#d33)}.mw-parser-output .cs1-visible-error{color:var(--color-error,#d33)}.mw-parser-output .cs1-maint{display:none;color:#085;margin-left:0.3em}.mw-parser-output .cs1-kern-left{padding-left:0.2em}.mw-parser-output .cs1-kern-right{padding-right:0.2em}.mw-parser-output .citation .mw-selflink{font-weight:inherit}@media screen{.mw-parser-output .cs1-format{font-size:95%}html.skin-theme-clientpref-night .mw-parser-output .cs1-maint{color:#18911f}}@media screen and (prefers-color-scheme:dark){html.skin-theme-clientpref-os .mw-parser-output .cs1-maint{color:#18911f}}
/* end https://en.wikipedia.org/ */
</style><cite id="CITEREFBartneck,_C.Belpaeme,_T.Eyssel,_F.Kanda,_T.2019" class="citation book cs1">Bartneck, C.; Belpaeme, T.; Eyssel, F.; Kanda, T.; Keijsers, M.; Šabanović, S. (2019). <i>Human–Robot Interaction - an introduction</i>. Cambridge U.P.</cite><sup id="cite_ref-hri-textbook_54-0" class="reference"><a href="#cite_note-hri-textbook-54"><span class="cite-bracket">[</span>54<span class="cite-bracket">]</span></a></sup> – free PDF available online<sup id="cite_ref-55" class="reference"><a href="#cite_note-55"><span class="cite-bracket">[</span>55<span class="cite-bracket">]</span></a></sup></li>
<li><cite id="CITEREFKanda,_T.Ishiguro,_H.2012" class="citation book cs1">Kanda, T.; Ishiguro, H. (2012). <i>Human–Robot Interaction in Social Robotics</i>. CRC Press.</cite><sup id="cite_ref-56" class="reference"><a href="#cite_note-56"><span class="cite-bracket">[</span>56<span class="cite-bracket">]</span></a></sup></li>
<li><cite id="CITEREFBreazeal,_C.Dautenhahn,_K.Kanda,_T.2016" class="citation book cs1">Breazeal, C.; Dautenhahn, K.; Kanda, T. (2016). "Social Robotics". <i>Springer Handbook of Robotics</i>. pp. <span class="nowrap">1935–</span>1972.</cite> – chapter in an extensive handbook.<sup id="cite_ref-57" class="reference"><a href="#cite_note-57"><span class="cite-bracket">[</span>57<span class="cite-bracket">]</span></a></sup></li></ul>
<div class="mw-heading mw-heading3"><h3 id="Courses">Courses</h3></div>
<p>Many universities offer courses in Human–Robot Interaction.
</p>
<div class="mw-heading mw-heading4"><h4 id="University_Courses_and_Degrees">University Courses and Degrees</h4></div>
<ul><li><a href="Tufts_University" title="Tufts University">Tufts University</a>, Medford, MA, USA, MS and PhD programs in Human–Robot Interaction</li>
<li><a href="University_of_Waterloo" title="University of Waterloo">University of Waterloo</a>, Canada, Kerstin Dautenhahn, Social Robotics – Foundations, Technology and Applications of Human-Centered Robotics</li>
<li><a href="National_Taipei_University" title="National Taipei University">National Taipei University</a> in Taiwan, Taiwan, Hooman Samani, M5226 Advanced Robotics</li>
<li><a href="Ontario_Tech_University" title="Ontario Tech University">Ontario Tech University</a>, Canada, Patrick C. K. Hung, BUSI4590U Topics in Technology Management & INFR 4599U Service Robots Innovation for Commerce</li>
<li>The <a href="Colorado_School_of_Mines" title="Colorado School of Mines">Colorado School of Mines</a>, USA, Tom Williams, CSCI 436 / 536: Human–Robot Interaction</li>
<li><a href="Heriot-Watt_University" title="Heriot-Watt University">Heriot-Watt University</a>, UK, Lynne Baillie, F21HR Human Robot Interaction</li>
<li><a href="Uppsala_University" title="Uppsala University">Uppsala University</a>, Sweden, Filip Malmberg, UU-61611 Social Robotics and Human–Robot Interaction</li>
<li><a href="Sk%C3%B6vde_University" class="mw-redirect" title="Skövde University">Skövde University</a>, Sweden, MSc Human–Robot Interaction program</li>
<li><a href="Indiana_University" title="Indiana University">Indiana University</a>, Bloomington, USA, Selma Sabanovic, INFO-I 440 Human–Robot Interaction</li>
<li><a href="Ghent_University" title="Ghent University">Ghent University</a>, Belgium, Tony Belpaeme, E019370A Robotics module</li>
<li><a href="Bielefeld_University" title="Bielefeld University">Bielefeld University</a>, Germany, Frederike Eyssel, 270037 Sozialpsychologische Aspekte der Mensch-Maschine Interaktion</li>
<li><a href="Kyoto_University" title="Kyoto University">Kyoto University</a>, Japan, Takayuki Kanda, 3218000 Human–Robot Interaction (ヒューマンロボットインタラクション)</li>
<li><a href="KTH_Royal_Institute_of_Technology" title="KTH Royal Institute of Technology">KTH Royal Institute of Technology</a>, Sweden, Iolanda Leite, DD2413 Social Robotics</li>
<li><a href="Chalmers_University_of_Technology" title="Chalmers University of Technology">Chalmers University of Technology</a>, Sweden, Mohammad Obaid, DAT545 Human-Robot Interaction Design</li></ul>
<div class="mw-heading mw-heading4"><h4 id="Online_Courses_and_Degrees">Online Courses and Degrees</h4></div>
<p>There are also online courses available such as <a href="Mooc" class="mw-redirect" title="Mooc">Mooc</a>:
</p>
<ul><li><a href="University_of_Canterbury" title="University of Canterbury">University of Canterbury</a> (UCx) – edX program
<ul><li>Professional Certificate in Human–Robot Interaction<sup id="cite_ref-58" class="reference"><a href="#cite_note-58"><span class="cite-bracket">[</span>58<span class="cite-bracket">]</span></a></sup></li>
<li>Introduction to Human–Robot Interaction<sup id="cite_ref-59" class="reference"><a href="#cite_note-59"><span class="cite-bracket">[</span>59<span class="cite-bracket">]</span></a></sup></li>
<li>Methods and Application in Human–Robot Interaction<sup id="cite_ref-60" class="reference"><a href="#cite_note-60"><span class="cite-bracket">[</span>60<span class="cite-bracket">]</span></a></sup></li></ul></li></ul>
<div class="mw-heading mw-heading2"><h2 id="Footnotes">Footnotes</h2></div>
<style data-mw-deduplicate="TemplateStyles:r1239543626">
/* start https://en.wikipedia.org/ */
.mw-parser-output .reflist{margin-bottom:0.5em;list-style-type:decimal}@media screen{.mw-parser-output .reflist{font-size:90%}}.mw-parser-output .reflist .references{font-size:100%;margin-bottom:0;list-style-type:inherit}.mw-parser-output .reflist-columns-2{column-width:30em}.mw-parser-output .reflist-columns-3{column-width:25em}.mw-parser-output .reflist-columns{margin-top:0.3em}.mw-parser-output .reflist-columns ol{margin-top:0}.mw-parser-output .reflist-columns li{page-break-inside:avoid;break-inside:avoid-column}.mw-parser-output .reflist-upper-alpha{list-style-type:upper-alpha}.mw-parser-output .reflist-upper-roman{list-style-type:upper-roman}.mw-parser-output .reflist-lower-alpha{list-style-type:lower-alpha}.mw-parser-output .reflist-lower-greek{list-style-type:lower-greek}.mw-parser-output .reflist-lower-roman{list-style-type:lower-roman}
/* end https://en.wikipedia.org/ */
</style><div class="reflist reflist-lower-alpha">
</div>
<div class="mw-heading mw-heading2"><h2 id="References">References</h2></div>
<div class="reflist reflist-columns references-column-width" style="column-width: 30em;">
<ol class="references">
<li id="cite_note-Kalinowska-1"><span class="mw-cite-backlink">^ <a href="#cite_ref-Kalinowska_1-0"><sup><i><b>a</b></i></sup></a> <a href="#cite_ref-Kalinowska_1-1"><sup><i><b>b</b></i></sup></a></span> <span class="reference-text"><cite id="CITEREFKalinowskaPilarskiMurphey2023" class="citation journal cs1">Kalinowska, Aleksandra; Pilarski, Patrick M.; Murphey, Todd D. (3 May 2023). <a rel="nofollow" class="external text" href="https://doi.org/10.1146%2Fannurev-control-070122-102501">"Embodied Communication: How Robots and People Communicate Through Physical Interaction"</a>. <i>Annual Review of Control, Robotics, and Autonomous Systems</i>. <b>6</b> (1): <span class="nowrap">205–</span>232. <a href="Doi_(identifier)" class="mw-redirect" title="Doi (identifier)">doi</a>:<span class="id-lock-free" title="Freely accessible"><a rel="nofollow" class="external text" href="https://doi.org/10.1146%2Fannurev-control-070122-102501">10.1146/annurev-control-070122-102501</a></span>. <a href="ISSN_(identifier)" class="mw-redirect" title="ISSN (identifier)">ISSN</a> <a rel="nofollow" class="external text" href="https://search.worldcat.org/issn/2573-5144">2573-5144</a>. <a href="S2CID_(identifier)" class="mw-redirect" title="S2CID (identifier)">S2CID</a> <a rel="nofollow" class="external text" href="https://api.semanticscholar.org/CorpusID:255701603">255701603</a>.</cite></span>
</li>
<li id="cite_note-IROBOT-2"><span class="mw-cite-backlink"><b><a href="#cite_ref-IROBOT_2-0">^</a></b></span> <span class="reference-text"><cite id="CITEREFAsimov1950" class="citation book cs1">Asimov, Isaac (1950). "Runaround". <i>I, Robot</i>. The Isaac Asimov Collection. New York: Doubleday. p. 40. <a href="ISBN_(identifier)" class="mw-redirect" title="ISBN (identifier)">ISBN</a> <bdi>978-0-385-42304-5</bdi>. <q>This is an <i>exact</i> transcription of the laws. They also appear in the front of the book, and in both places there is <i>no</i> "to" in the 2nd law. Note that this snippet has been copy-pasted from <a href="Three_Laws_of_Robotics" title="Three Laws of Robotics">Three Laws of Robotics</a></q></cite> <span class="cs1-hidden-error citation-comment"><code class="cs1-code">{{cite book}}</code>: </span><span class="cs1-hidden-error citation-comment">ISBN / Date incompatibility (help)</span></span>
</li>
<li id="cite_note-3"><span class="mw-cite-backlink"><b><a href="#cite_ref-3">^</a></b></span> <span class="reference-text"><cite id="CITEREFHornbeck2008" class="citation web cs1">Hornbeck, Dan (2008-08-21). <a rel="nofollow" class="external text" href="https://www.machinedesign.com/news/article/21829303/safety-in-automation">"Safety in Automation"</a>. <i>machinedesign.com</i><span class="reference-accessdate">. Retrieved <span class="nowrap">2020-06-12</span></span>.</cite></span>
</li>
<li id="cite_note-scholtz_eval_methods-4"><span class="mw-cite-backlink"><b><a href="#cite_ref-scholtz_eval_methods_4-0">^</a></b></span> <span class="reference-text"><cite id="CITEREFScholtz" class="citation journal cs1">Scholtz, Jean. "Evaluation methods for human-system performance of intelligent systems". <i>Proceedings of the 2002 Performance Metrics for Intelligent Systems (PerMIS) Workshop</i>. <a href="Doi_(identifier)" class="mw-redirect" title="Doi (identifier)">doi</a>:<a rel="nofollow" class="external text" href="https://doi.org/10.1007%2Fs10514-006-9016-5">10.1007/s10514-006-9016-5</a>. <a href="S2CID_(identifier)" class="mw-redirect" title="S2CID (identifier)">S2CID</a> <a rel="nofollow" class="external text" href="https://api.semanticscholar.org/CorpusID:31481065">31481065</a>.</cite></span>
</li>
<li id="cite_note-5"><span class="mw-cite-backlink"><b><a href="#cite_ref-5">^</a></b></span> <span class="reference-text"><cite id="CITEREFKahnIshiguroFriedmanKanda2006" class="citation conference cs1">Kahn, Peter H.; Ishiguro, Hiroshi; Friedman, Batya; Kanda, Takayuki (2006-09-08). <i>What is a human? - Toward psychological benchmarks in the field of human–robot interaction</i>. ROMAN 2006 - the 15th IEEE International Symposium on Robot and Human Interactive Communication. pp. <span class="nowrap">364–</span>371. <a href="Doi_(identifier)" class="mw-redirect" title="Doi (identifier)">doi</a>:<a rel="nofollow" class="external text" href="https://doi.org/10.1109%2FROMAN.2006.314461">10.1109/ROMAN.2006.314461</a>. <a href="ISBN_(identifier)" class="mw-redirect" title="ISBN (identifier)">ISBN</a> <bdi>1-4244-0564-5</bdi>. <a href="S2CID_(identifier)" class="mw-redirect" title="S2CID (identifier)">S2CID</a> <a rel="nofollow" class="external text" href="https://api.semanticscholar.org/CorpusID:10368589">10368589</a>.</cite></span>
</li>
<li id="cite_note-6"><span class="mw-cite-backlink"><b><a href="#cite_ref-6">^</a></b></span> <span class="reference-text"><cite class="citation web cs1"><a rel="nofollow" class="external text" href="https://www.cnn.com/2003/TECH/ptech/11/20/comdex.bestof/index.html">"Meet Paro, the therapeutic robot seal"</a>. <i><a href="CNN" title="CNN">CNN</a></i>. November 20, 2003<span class="reference-accessdate">. Retrieved <span class="nowrap">2020-06-12</span></span>.</cite></span>
</li>
<li id="cite_note-7"><span class="mw-cite-backlink"><b><a href="#cite_ref-7">^</a></b></span> <span class="reference-text"><cite class="citation web cs1"><a rel="nofollow" class="external text" href="https://as.cornell.edu/news/future-human-robot-interaction">"The future of human–robot interaction"</a>. <i>as.cornell.edu</i>. 27 September 2017<span class="reference-accessdate">. Retrieved <span class="nowrap">2020-06-12</span></span>.</cite></span>
</li>
<li id="cite_note-8"><span class="mw-cite-backlink"><b><a href="#cite_ref-8">^</a></b></span> <span class="reference-text"><cite class="citation web cs1"><a rel="nofollow" class="external text" href="http://humanrobotinteraction.org/3-emergence-of-hri-as-a-field/">"3: Emergence of HRI as a Field"</a>. <i>Human–Robot Interaction</i><span class="reference-accessdate">. Retrieved <span class="nowrap">2020-06-12</span></span>.</cite></span>
</li>
<li id="cite_note-9"><span class="mw-cite-backlink"><b><a href="#cite_ref-9">^</a></b></span> <span class="reference-text"><cite id="CITEREFDautenhahn2007" class="citation journal cs1"><a href="Kerstin_Dautenhahn" title="Kerstin Dautenhahn">Dautenhahn, Kerstin</a> (29 April 2007). <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2346526">"Socially intelligent robots: Dimensions of human–robot interaction"</a>. <i>Philosophical Transactions of the Royal Society B: Biological Sciences</i>. <b>362</b> (1480): <span class="nowrap">679–</span>704. <a href="Doi_(identifier)" class="mw-redirect" title="Doi (identifier)">doi</a>:<a rel="nofollow" class="external text" href="https://doi.org/10.1098%2Frstb.2006.2004">10.1098/rstb.2006.2004</a>. <a href="PMC_(identifier)" class="mw-redirect" title="PMC (identifier)">PMC</a> <span class="id-lock-free" title="Freely accessible"><a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2346526">2346526</a></span>. <a href="PMID_(identifier)" class="mw-redirect" title="PMID (identifier)">PMID</a> <a rel="nofollow" class="external text" href="https://pubmed.ncbi.nlm.nih.gov/17301026">17301026</a>.</cite></span>
</li>
<li id="cite_note-10"><span class="mw-cite-backlink"><b><a href="#cite_ref-10">^</a></b></span> <span class="reference-text"><cite id="CITEREFSauppéMutlu2015" class="citation conference cs1">Sauppé, Allison; Mutlu, Bilge (2015). <i>Proceedings of the 33rd Annual ACM Conference on Human Factors in Computing Systems</i>. ACM Conference on Human Factors in Computing Systems - CHI '15. pp. <span class="nowrap">3613–</span>3622. <a href="Doi_(identifier)" class="mw-redirect" title="Doi (identifier)">doi</a>:<a rel="nofollow" class="external text" href="https://doi.org/10.1145%2F2702123.2702181">10.1145/2702123.2702181</a>. <a href="ISBN_(identifier)" class="mw-redirect" title="ISBN (identifier)">ISBN</a> <bdi>978-1-4503-3145-6</bdi>. <a href="S2CID_(identifier)" class="mw-redirect" title="S2CID (identifier)">S2CID</a> <a rel="nofollow" class="external text" href="https://api.semanticscholar.org/CorpusID:3136657">3136657</a>.</cite></span>
</li>
<li id="cite_note-11"><span class="mw-cite-backlink"><b><a href="#cite_ref-11">^</a></b></span> <span class="reference-text"><cite class="citation book cs1"><a rel="nofollow" class="external text" href="https://www.interaction-design.org/literature/book/the-encyclopedia-of-human-computer-interaction-2nd-ed/human-robot-interaction"><i>Human–Robot Interaction</i></a> – via www.interaction-design.org.</cite></span>
</li>
<li id="cite_note-12"><span class="mw-cite-backlink"><b><a href="#cite_ref-12">^</a></b></span> <span class="reference-text"><cite id="CITEREFBubašLovrenčić2002" class="citation conference cs1">Bubaš, Goran; Lovrenčić, Alen (2002). <a rel="nofollow" class="external text" href="https://www.bib.irb.hr/136705">"Implications of interpersonal communication competence research on the design of artificial behavioral systems that interact with humans"</a>. <i>Proceedings of the 6th International Conference on Intelligent Engineering Systems</i>. International Conference on Intelligent Engineering Systems - INES 2002.</cite></span>
</li>
<li id="cite_note-13"><span class="mw-cite-backlink"><b><a href="#cite_ref-13">^</a></b></span> <span class="reference-text"><cite id="CITEREFCollobert,_RonanWeston,_JasonBottou,_LéonKarlen,_Michael2011" class="citation book cs1">Collobert, Ronan; Weston, Jason; Bottou, Léon; Karlen, Michael; Kavukcuoglu, Koray; Kuksa, Pavel (2011). <i>Natural Language Processing (Almost) from Scratch</i>. <a href="OCLC_(identifier)" class="mw-redirect" title="OCLC (identifier)">OCLC</a> <a rel="nofollow" class="external text" href="https://search.worldcat.org/oclc/963993063">963993063</a>.</cite></span>
</li>
<li id="cite_note-Mathur20162-14"><span class="mw-cite-backlink"><b><a href="#cite_ref-Mathur20162_14-0">^</a></b></span> <span class="reference-text"><cite id="CITEREFMathurReichling2016" class="citation journal cs1">Mathur, Maya B.; Reichling, David B. (2016). <a rel="nofollow" class="external text" href="https://doi.org/10.1016%2Fj.cognition.2015.09.008">"Navigating a social world with robot partners: S quantitative cartography of the Uncanny Valley"</a>. <i>Cognition</i>. <b>146</b>: <span class="nowrap">22–</span>32. <a href="Doi_(identifier)" class="mw-redirect" title="Doi (identifier)">doi</a>:<span class="id-lock-free" title="Freely accessible"><a rel="nofollow" class="external text" href="https://doi.org/10.1016%2Fj.cognition.2015.09.008">10.1016/j.cognition.2015.09.008</a></span>. <a href="PMID_(identifier)" class="mw-redirect" title="PMID (identifier)">PMID</a> <a rel="nofollow" class="external text" href="https://pubmed.ncbi.nlm.nih.gov/26402646">26402646</a>.</cite></span>
</li>
<li id="cite_note-15"><span class="mw-cite-backlink"><b><a href="#cite_ref-15">^</a></b></span> <span class="reference-text"><cite id="CITEREFAdalgeirssonBreazeal2010" class="citation conference cs1">Adalgeirsson, Sigurdur; Breazeal, Cynthia (2010). <a rel="nofollow" class="external text" href="http://dl.acm.org/citation.cfm?id=1734467">"MeBot: A Robotic Platform for Socially Embodied Presence"</a> <span class="cs1-format">(pdf)</span>. <i>Proceedings of the 5th ACM/IEEE International Conference on Human–Robot Interaction</i>. ACM/IEEE International Conference on Human–Robot Interaction – HRI '10. pp. <span class="nowrap">15–</span>22. <a href="ISBN_(identifier)" class="mw-redirect" title="ISBN (identifier)">ISBN</a> <bdi>9781424448937</bdi>.</cite></span>
</li>
<li id="cite_note-16"><span class="mw-cite-backlink"><b><a href="#cite_ref-16">^</a></b></span> <span class="reference-text"><cite id="CITEREFSakamotoKandaOnoIshiguro2007" class="citation conference cs1">Sakamoto, Daisuke; Kanda, Takayuki; Ono, Tetsuo; Ishiguro, Hiroshi; Hagita, Norihiro (2007). "Android as a telecommunication medium with a human-like presence". <i>Proceeding of the ACM/IEEE International Conference on Human–Robot Interaction</i>. ACM/IEEE International Conference on Human–Robot Interaction - HRI '07. p. 193. <a href="Doi_(identifier)" class="mw-redirect" title="Doi (identifier)">doi</a>:<a rel="nofollow" class="external text" href="https://doi.org/10.1145%2F1228716.1228743">10.1145/1228716.1228743</a>. <a href="ISBN_(identifier)" class="mw-redirect" title="ISBN (identifier)">ISBN</a> <bdi>978-1-59593-617-2</bdi>. <a href="S2CID_(identifier)" class="mw-redirect" title="S2CID (identifier)">S2CID</a> <a rel="nofollow" class="external text" href="https://api.semanticscholar.org/CorpusID:1093338">1093338</a>.</cite></span>
</li>
<li id="cite_note-17"><span class="mw-cite-backlink"><b><a href="#cite_ref-17">^</a></b></span> <span class="reference-text"><cite id="CITEREFSpenceWestermanEdwardsEdwards2014" class="citation journal cs1">Spence, Patric R.; Westerman, David; Edwards, Chad; Edwards, Autumn (July 2014). "Welcoming Our Robot Overlords: Initial Expectations About Interaction With a Robot". <i>Communication Research Reports</i>. <b>31</b> (3): <span class="nowrap">272–</span>280. <a href="Doi_(identifier)" class="mw-redirect" title="Doi (identifier)">doi</a>:<a rel="nofollow" class="external text" href="https://doi.org/10.1080%2F08824096.2014.924337">10.1080/08824096.2014.924337</a>. <a href="S2CID_(identifier)" class="mw-redirect" title="S2CID (identifier)">S2CID</a> <a rel="nofollow" class="external text" href="https://api.semanticscholar.org/CorpusID:144545474">144545474</a>.</cite></span>
</li>
<li id="cite_note-18"><span class="mw-cite-backlink"><b><a href="#cite_ref-18">^</a></b></span> <span class="reference-text"><cite id="CITEREFEdwardsEdwardsSpenceWesterman2015" class="citation journal cs1">Edwards, Chad; Edwards, Autumn; Spence, Patric R.; Westerman, David (21 December 2015). <a rel="nofollow" class="external text" href="https://works.bepress.com/patric_spence/50">"Initial Interaction Expectations with Robots: Testing the Human-To-Human Interaction Script"</a>. <i>Communication Studies</i>. <b>67</b> (2): <span class="nowrap">227–</span>238. <a href="Doi_(identifier)" class="mw-redirect" title="Doi (identifier)">doi</a>:<a rel="nofollow" class="external text" href="https://doi.org/10.1080%2F10510974.2015.1121899">10.1080/10510974.2015.1121899</a>. <a href="S2CID_(identifier)" class="mw-redirect" title="S2CID (identifier)">S2CID</a> <a rel="nofollow" class="external text" href="https://api.semanticscholar.org/CorpusID:146204935">146204935</a>.</cite></span>
</li>
<li id="cite_note-19"><span class="mw-cite-backlink"><b><a href="#cite_ref-19">^</a></b></span> <span class="reference-text"><cite id="CITEREFBanks2021" class="citation journal cs1">Banks, Jaime (2021-01-28). <a rel="nofollow" class="external text" href="https://doi.org/10.1037%2Ftmb0000025">"Of like mind: The (mostly) similar mentalizing of robots and humans"</a>. <i>Technology, Mind, and Behavior</i>. <b>1</b> (2). <a href="Doi_(identifier)" class="mw-redirect" title="Doi (identifier)">doi</a>:<span class="id-lock-free" title="Freely accessible"><a rel="nofollow" class="external text" href="https://doi.org/10.1037%2Ftmb0000025">10.1037/tmb0000025</a></span>.</cite></span>
</li>
<li id="cite_note-20"><span class="mw-cite-backlink"><b><a href="#cite_ref-20">^</a></b></span> <span class="reference-text"><cite id="CITEREFPettigrewTropp2006" class="citation journal cs1">Pettigrew, T.F.; Tropp, L.R. (2006). "A meta-analytic test of intergroup contact theory". <i>Journal of Personality and Social Psychology</i>. <b>90</b> (5): <span class="nowrap">751–</span>783. <a href="Doi_(identifier)" class="mw-redirect" title="Doi (identifier)">doi</a>:<a rel="nofollow" class="external text" href="https://doi.org/10.1037%2F0022-3514.90.5.751">10.1037/0022-3514.90.5.751</a>. <a href="PMID_(identifier)" class="mw-redirect" title="PMID (identifier)">PMID</a> <a rel="nofollow" class="external text" href="https://pubmed.ncbi.nlm.nih.gov/16737372">16737372</a>. <a href="S2CID_(identifier)" class="mw-redirect" title="S2CID (identifier)">S2CID</a> <a rel="nofollow" class="external text" href="https://api.semanticscholar.org/CorpusID:14149856">14149856</a>.</cite></span>
</li>
<li id="cite_note-21"><span class="mw-cite-backlink"><b><a href="#cite_ref-21">^</a></b></span> <span class="reference-text"><cite id="CITEREFHaggadoneBanksKoban2021" class="citation journal cs1">Haggadone, Brad A.; Banks, Jaime; Koban, Kevin (2021-04-07). "Of robots and robotkind: Extending intergroup contact theory to social machines". <i>Communication Research Reports</i>. <b>38</b> (3): <span class="nowrap">161–</span>171. <a href="Doi_(identifier)" class="mw-redirect" title="Doi (identifier)">doi</a>:<a rel="nofollow" class="external text" href="https://doi.org/10.1080%2F08824096.2021.1909551">10.1080/08824096.2021.1909551</a>. <a href="S2CID_(identifier)" class="mw-redirect" title="S2CID (identifier)">S2CID</a> <a rel="nofollow" class="external text" href="https://api.semanticscholar.org/CorpusID:233566369">233566369</a>.</cite></span>
</li>
<li id="cite_note-22"><span class="mw-cite-backlink"><b><a href="#cite_ref-22">^</a></b></span> <span class="reference-text"><cite id="CITEREFWullenkordFrauneEysselŠabanović2016" class="citation conference cs1">Wullenkord, Ricarda; Fraune, Marlena R.; Eyssel, Friederike; Šabanović, Selma (August 2016). <i>Getting in touch: How imagined, actual, and physical contact affect evaluations of robots</i>. 25th IEEE International Symposium on Robot and Human Interactive Communication (RO-MAN 2016). pp. <span class="nowrap">980–</span>985. <a href="Doi_(identifier)" class="mw-redirect" title="Doi (identifier)">doi</a>:<a rel="nofollow" class="external text" href="https://doi.org/10.1109%2FROMAN.2016.7745228">10.1109/ROMAN.2016.7745228</a>.</cite></span>
</li>
<li id="cite_note-23"><span class="mw-cite-backlink"><b><a href="#cite_ref-23">^</a></b></span> <span class="reference-text"><cite class="citation conference cs1"><a rel="nofollow" class="external text" href="http://dl.acm.org/citation.cfm?id=2906846"><i>Anticipatory robot control for efficient human–robot collaboration</i></a> <span class="cs1-format">(pdf)</span>. HRI '16: The Eleventh ACM/IEEE International Conference on Human–Robot Interaction. 2016. pp. <span class="nowrap">83–</span>90. <a href="ISBN_(identifier)" class="mw-redirect" title="ISBN (identifier)">ISBN</a> <bdi>9781467383707</bdi>.</cite></span>
</li>
<li id="cite_note-24"><span class="mw-cite-backlink"><b><a href="#cite_ref-24">^</a></b></span> <span class="reference-text"><cite id="CITEREFRoyEdan2018" class="citation journal cs1">Roy, Someshwar; Edan, Yael (2018-03-27). "Investigating Joint-Action in Short-Cycle Repetitive Handover Tasks: The Role of Giver Versus Receiver and its Implications for Human–Robot Collaborative System Design". <i>International Journal of Social Robotics</i>. <b>12</b> (5): <span class="nowrap">973–</span>988. <a href="Doi_(identifier)" class="mw-redirect" title="Doi (identifier)">doi</a>:<a rel="nofollow" class="external text" href="https://doi.org/10.1007%2Fs12369-017-0424-9">10.1007/s12369-017-0424-9</a>. <a href="ISSN_(identifier)" class="mw-redirect" title="ISSN (identifier)">ISSN</a> <a rel="nofollow" class="external text" href="https://search.worldcat.org/issn/1875-4805">1875-4805</a>. <a href="S2CID_(identifier)" class="mw-redirect" title="S2CID (identifier)">S2CID</a> <a rel="nofollow" class="external text" href="https://api.semanticscholar.org/CorpusID:149855145">149855145</a>.</cite></span>
</li>
<li id="cite_note-25"><span class="mw-cite-backlink"><b><a href="#cite_ref-25">^</a></b></span> <span class="reference-text"><cite class="citation conference cs1">"Coordination mechanisms in human–robot collaboration". <i>Proceedings of the 2013 ACM/IEEE International Conference on Human–Robot Interaction</i>. ACM/IEEE International Conference on Human–Robot Interaction - HRI 2013. 2013. <a href="CiteSeerX_(identifier)" class="mw-redirect" title="CiteSeerX (identifier)">CiteSeerX</a> <span class="id-lock-free" title="Freely accessible"><a rel="nofollow" class="external text" href="https://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.478.3634">10.1.1.478.3634</a></span>.</cite></span>
</li>
<li id="cite_note-26"><span class="mw-cite-backlink"><b><a href="#cite_ref-26">^</a></b></span> <span class="reference-text"><cite id="CITEREFSebanzBekkeringKnoblich2006" class="citation journal cs1">Sebanz, Natalie; Bekkering, Harold; Knoblich, Günther (February 2006). "Joint action: bodies and minds moving together". <i>Trends in Cognitive Sciences</i>. <b>10</b> (2): <span class="nowrap">70–</span>76. <a href="Doi_(identifier)" class="mw-redirect" title="Doi (identifier)">doi</a>:<a rel="nofollow" class="external text" href="https://doi.org/10.1016%2Fj.tics.2005.12.009">10.1016/j.tics.2005.12.009</a>. <a href="Hdl_(identifier)" class="mw-redirect" title="Hdl (identifier)">hdl</a>:<span class="id-lock-free" title="Freely accessible"><a rel="nofollow" class="external text" href="https://hdl.handle.net/2066%2F55284">2066/55284</a></span>. <a href="PMID_(identifier)" class="mw-redirect" title="PMID (identifier)">PMID</a> <a rel="nofollow" class="external text" href="https://pubmed.ncbi.nlm.nih.gov/16406326">16406326</a>. <a href="S2CID_(identifier)" class="mw-redirect" title="S2CID (identifier)">S2CID</a> <a rel="nofollow" class="external text" href="https://api.semanticscholar.org/CorpusID:1781023">1781023</a>.</cite></span>
</li>
<li id="cite_note-27"><span class="mw-cite-backlink"><b><a href="#cite_ref-27">^</a></b></span> <span class="reference-text"><cite id="CITEREFHuangCakmakMutlu2015" class="citation conference cs1">Huang, Chien-Ming; Cakmak, Maya; Mutlu, Bilge (2015). <a rel="nofollow" class="external text" href="http://www.roboticsproceedings.org/rss11/p31.pdf"><i>Adaptive coordination strategies for human–robot handovers</i></a> <span class="cs1-format">(PDF)</span>. Robotics: Science and Systems.</cite></span>
</li>
<li id="cite_note-28"><span class="mw-cite-backlink"><b><a href="#cite_ref-28">^</a></b></span> <span class="reference-text"><cite id="CITEREFSomeshwarEdan2017" class="citation arxiv cs1">Someshwar, Roy; Edan, Yael (2017-08-30). "Givers & receivers perceive handover tasks differently: Implications for human–robot collaborative system design". <a href="ArXiv_(identifier)" class="mw-redirect" title="ArXiv (identifier)">arXiv</a>:<span class="id-lock-free" title="Freely accessible"><a rel="nofollow" class="external text" href="https://arxiv.org/abs/1708.06207">1708.06207</a></span> [<a rel="nofollow" class="external text" href="https://arxiv.org/archive/cs.HC">cs.HC</a>].</cite></span>
</li>
<li id="cite_note-29"><span class="mw-cite-backlink"><b><a href="#cite_ref-29">^</a></b></span> <span class="reference-text"><cite class="citation conference cs1">"WeBuild: Automatically distributing assembly tasks among collocated workers to improve coordination". <i>CHI '17: Proceedings of the 2017 CHI Conference on Human Factors in Computing Systems</i>. Association for Computing Machinery. 2017. <a href="Doi_(identifier)" class="mw-redirect" title="Doi (identifier)">doi</a>:<a rel="nofollow" class="external text" href="https://doi.org/10.1145%2F3025453.3026036">10.1145/3025453.3026036</a>.</cite></span>
</li>
<li id="cite_note-30"><span class="mw-cite-backlink"><b><a href="#cite_ref-30">^</a></b></span> <span class="reference-text"><cite id="CITEREFBartneckYogeeswaranSerWoodward2018" class="citation book cs1">Bartneck, Christoph; Yogeeswaran, Kumar; Ser, Qi Min; Woodward, Graeme; Sparrow, Robert; Wang, Siheng; Eyssel, Friederike (26 February 2018). "Robots And Racism". <i>Proceedings of the 2018 ACM/IEEE International Conference on Human-Robot Interaction</i>. pp. <span class="nowrap">196–</span>204. <a href="Doi_(identifier)" class="mw-redirect" title="Doi (identifier)">doi</a>:<a rel="nofollow" class="external text" href="https://doi.org/10.1145%2F3171221.3171260">10.1145/3171221.3171260</a>. <a href="ISBN_(identifier)" class="mw-redirect" title="ISBN (identifier)">ISBN</a> <bdi>978-1-4503-4953-6</bdi>.</cite></span>
</li>
<li id="cite_note-31"><span class="mw-cite-backlink"><b><a href="#cite_ref-31">^</a></b></span> <span class="reference-text"><cite id="CITEREFPaterson2024" class="citation news cs1">Paterson, Mark (26 January 2024). <a rel="nofollow" class="external text" href="https://theconversation.com/why-are-so-many-robots-white-213336">"Why are so many robots white?"</a>. <i>The Conversation</i><span class="reference-accessdate">. Retrieved <span class="nowrap">8 June</span> 2024</span>.</cite></span>
</li>
<li id="cite_note-32"><span class="mw-cite-backlink"><b><a href="#cite_ref-32">^</a></b></span> <span class="reference-text"><cite id="CITEREFAllan2019" class="citation news cs1">Allan, Caroline Klein,David (1 August 2019). <a rel="nofollow" class="external text" href="https://www.cnn.com/2019/08/01/tech/robot-racism-scn-trnd/index.html">"Robot racism? Yes, says a study showing humans' biases extend to robots"</a>. <i>CNN</i><span class="reference-accessdate">. Retrieved <span class="nowrap">8 June</span> 2024</span>.</cite><span class="cs1-maint citation-comment"><code class="cs1-code">{{cite news}}</code>: CS1 maint: multiple names: authors list (link)</span></span>
</li>
<li id="cite_note-33"><span class="mw-cite-backlink"><b><a href="#cite_ref-33">^</a></b></span> <span class="reference-text"><cite id="CITEREFSamuel2019" class="citation news cs1">Samuel, Sigal (2 August 2019). <a rel="nofollow" class="external text" href="https://www.vox.com/future-perfect/2019/8/2/20746236/ai-robot-empathy-ethics-racism-gender-bias">"Humans keep directing abuse — even racism — at robots"</a>. <i>Vox</i><span class="reference-accessdate">. Retrieved <span class="nowrap">8 June</span> 2024</span>.</cite></span>
</li>
<li id="cite_note-34"><span class="mw-cite-backlink"><b><a href="#cite_ref-34">^</a></b></span> <span class="reference-text"><cite id="CITEREFAckerman2018" class="citation news cs1">Ackerman, Evan (July 17, 2018). <a rel="nofollow" class="external text" href="https://spectrum.ieee.org/robots-and-racism">"Humans Show Racial Bias Towards Robots of Different Colors: Study - IEEE Spectrum"</a>. <i><a href="IEEE" class="mw-redirect" title="IEEE">IEEE</a></i><span class="reference-accessdate">. Retrieved <span class="nowrap">8 June</span> 2024</span>.</cite></span>
</li>
<li id="cite_note-:0-35"><span class="mw-cite-backlink">^ <a href="#cite_ref-:0_35-0"><sup><i><b>a</b></i></sup></a> <a href="#cite_ref-:0_35-1"><sup><i><b>b</b></i></sup></a> <a href="#cite_ref-:0_35-2"><sup><i><b>c</b></i></sup></a></span> <span class="reference-text"><cite id="CITEREFHentoutAouacheMaoudjAkli2019" class="citation journal cs1">Hentout, Abdelfetah; Aouache, Mustapha; Maoudj, Abderraouf; Akli, Isma (2019-08-18). "Human–robot interaction in industrial collaborative robotics: A literature review of the decade 2008–2017". <i>Advanced Robotics</i>. <b>33</b> (<span class="nowrap">15–</span>16): <span class="nowrap">764–</span>799. <a href="Doi_(identifier)" class="mw-redirect" title="Doi (identifier)">doi</a>:<a rel="nofollow" class="external text" href="https://doi.org/10.1080%2F01691864.2019.1636714">10.1080/01691864.2019.1636714</a>. <a href="ISSN_(identifier)" class="mw-redirect" title="ISSN (identifier)">ISSN</a> <a rel="nofollow" class="external text" href="https://search.worldcat.org/issn/0169-1864">0169-1864</a>. <a href="S2CID_(identifier)" class="mw-redirect" title="S2CID (identifier)">S2CID</a> <a rel="nofollow" class="external text" href="https://api.semanticscholar.org/CorpusID:198488518">198488518</a>.</cite></span>
</li>
<li id="cite_note-36"><span class="mw-cite-backlink"><b><a href="#cite_ref-36">^</a></b></span> <span class="reference-text"><cite id="CITEREFRegaDi_MarinoPasquarielloVitolo2021" class="citation journal cs1">Rega, Andrea; Di Marino, Castrese; Pasquariello, Agnese; Vitolo, Ferdinando; Patalano, Stanislao; Zanella, Alessandro; Lanzotti, Antonio (20 December 2021). <a rel="nofollow" class="external text" href="https://doi.org/10.3390%2Fapp112412147">"Collaborative Workplace Design: A Knowledge-Based Approach to Promote Human–Robot Collaboration and Multi-Objective Layout Optimization"</a>. <i>Applied Sciences</i>. <b>11</b> (24): 12147. <a href="Doi_(identifier)" class="mw-redirect" title="Doi (identifier)">doi</a>:<span class="id-lock-free" title="Freely accessible"><a rel="nofollow" class="external text" href="https://doi.org/10.3390%2Fapp112412147">10.3390/app112412147</a></span>. <a href="Hdl_(identifier)" class="mw-redirect" title="Hdl (identifier)">hdl</a>:<span class="id-lock-free" title="Freely accessible"><a rel="nofollow" class="external text" href="https://hdl.handle.net/10446%2F285754">10446/285754</a></span>.</cite></span>
</li>
<li id="cite_note-:1-37"><span class="mw-cite-backlink">^ <a href="#cite_ref-:1_37-0"><sup><i><b>a</b></i></sup></a> <a href="#cite_ref-:1_37-1"><sup><i><b>b</b></i></sup></a></span> <span class="reference-text"><cite id="CITEREFAggogeriMikolajczykO'Kane2019" class="citation journal cs1">Aggogeri, Francesco; Mikolajczyk, Tadeusz; O'Kane, James (April 2019). <a rel="nofollow" class="external text" href="https://doi.org/10.1177%2F1687814019841921">"Robotics for rehabilitation of hand movement in stroke survivors"</a>. <i>Advances in Mechanical Engineering</i>. <b>11</b> (4): 168781401984192. <a href="Doi_(identifier)" class="mw-redirect" title="Doi (identifier)">doi</a>:<span class="id-lock-free" title="Freely accessible"><a rel="nofollow" class="external text" href="https://doi.org/10.1177%2F1687814019841921">10.1177/1687814019841921</a></span>. <a href="ISSN_(identifier)" class="mw-redirect" title="ISSN (identifier)">ISSN</a> <a rel="nofollow" class="external text" href="https://search.worldcat.org/issn/1687-8140">1687-8140</a>.</cite></span>
</li>
<li id="cite_note-:2-38"><span class="mw-cite-backlink">^ <a href="#cite_ref-:2_38-0"><sup><i><b>a</b></i></sup></a> <a href="#cite_ref-:2_38-1"><sup><i><b>b</b></i></sup></a></span> <span class="reference-text"><cite id="CITEREFOñaGarcia-HaroJardónBalaguer2019" class="citation journal cs1">Oña, Edwin Daniel; Garcia-Haro, Juan Miguel; Jardón, Alberto; Balaguer, Carlos (2019-06-26). <a rel="nofollow" class="external text" href="https://doi.org/10.3390%2Fapp9132586">"Robotics in health care: Perspectives of robot-aided interventions in clinical practice for rehabilitation of upper limbs"</a>. <i>Applied Sciences</i>. <b>9</b> (13): 2586. <a href="Doi_(identifier)" class="mw-redirect" title="Doi (identifier)">doi</a>:<span class="id-lock-free" title="Freely accessible"><a rel="nofollow" class="external text" href="https://doi.org/10.3390%2Fapp9132586">10.3390/app9132586</a></span>. <a href="Hdl_(identifier)" class="mw-redirect" title="Hdl (identifier)">hdl</a>:<span class="id-lock-free" title="Freely accessible"><a rel="nofollow" class="external text" href="https://hdl.handle.net/10016%2F34029">10016/34029</a></span>. <a href="ISSN_(identifier)" class="mw-redirect" title="ISSN (identifier)">ISSN</a> <a rel="nofollow" class="external text" href="https://search.worldcat.org/issn/2076-3417">2076-3417</a>.</cite></span>
</li>
<li id="cite_note-:3-39"><span class="mw-cite-backlink">^ <a href="#cite_ref-:3_39-0"><sup><i><b>a</b></i></sup></a> <a href="#cite_ref-:3_39-1"><sup><i><b>b</b></i></sup></a></span> <span class="reference-text"><cite id="CITEREFRobinsonMacDonaldBroadbent2014" class="citation journal cs1">Robinson, Hayley; MacDonald, Bruce; Broadbent, Elizabeth (November 2014). "The role of healthcare robots for older people at Home: A review". <i>International Journal of Social Robotics</i>. <b>6</b> (4): <span class="nowrap">575–</span>591. <a href="Doi_(identifier)" class="mw-redirect" title="Doi (identifier)">doi</a>:<a rel="nofollow" class="external text" href="https://doi.org/10.1007%2Fs12369-014-0242-2">10.1007/s12369-014-0242-2</a>. <a href="ISSN_(identifier)" class="mw-redirect" title="ISSN (identifier)">ISSN</a> <a rel="nofollow" class="external text" href="https://search.worldcat.org/issn/1875-4791">1875-4791</a>. <a href="S2CID_(identifier)" class="mw-redirect" title="S2CID (identifier)">S2CID</a> <a rel="nofollow" class="external text" href="https://api.semanticscholar.org/CorpusID:25075532">25075532</a>.</cite></span>
</li>
<li id="cite_note-40"><span class="mw-cite-backlink"><b><a href="#cite_ref-40">^</a></b></span> <span class="reference-text"><cite id="CITEREFCarrosMeurerLöfflerUnbehaun2020" class="citation book cs1">Carros, Felix; Meurer, Johanna; Löffler, Diana; Unbehaun, David; Matthies, Sarah; Koch, Inga; Wieching, Rainer; Randall, Dave; Hassenzahl, Marc; Wulf, Volker (21 April 2020). "Exploring Human-Robot Interaction with the Elderly: Results from a Ten-Week Case Study in a Care Home". <i>Proceedings of the 2020 CHI Conference on Human Factors in Computing Systems</i>. pp. <span class="nowrap">1–</span>12. <a href="Doi_(identifier)" class="mw-redirect" title="Doi (identifier)">doi</a>:<a rel="nofollow" class="external text" href="https://doi.org/10.1145%2F3313831.3376402">10.1145/3313831.3376402</a>. <a href="ISBN_(identifier)" class="mw-redirect" title="ISBN (identifier)">ISBN</a> <bdi>9781450367080</bdi>. <a href="S2CID_(identifier)" class="mw-redirect" title="S2CID (identifier)">S2CID</a> <a rel="nofollow" class="external text" href="https://api.semanticscholar.org/CorpusID:218483496">218483496</a>.</cite></span>
</li>
<li id="cite_note-:49-41"><span class="mw-cite-backlink">^ <a href="#cite_ref-:49_41-0"><sup><i><b>a</b></i></sup></a> <a href="#cite_ref-:49_41-1"><sup><i><b>b</b></i></sup></a></span> <span class="reference-text"><cite id="CITEREFCarrosSchwaningerPreussnerRandall2022" class="citation book cs1">Carros, Felix; Schwaninger, Isabel; Preussner, Adrian; Randall, Dave; Wieching, Rainer; Fitzpatrick, Geraldine; Wulf, Volker (May 2022). "Care Workers Making Use of Robots: Results of a Three-Month Study on Human-Robot Interaction within a Care Home". <i>CHI Conference on Human Factors in Computing Systems</i>. pp. <span class="nowrap">1–</span>15. <a href="Doi_(identifier)" class="mw-redirect" title="Doi (identifier)">doi</a>:<span class="id-lock-free" title="Freely accessible"><a rel="nofollow" class="external text" href="https://doi.org/10.1145%2F3491102.3517435">10.1145/3491102.3517435</a></span>. <a href="ISBN_(identifier)" class="mw-redirect" title="ISBN (identifier)">ISBN</a> <bdi>9781450391573</bdi>. <a href="S2CID_(identifier)" class="mw-redirect" title="S2CID (identifier)">S2CID</a> <a rel="nofollow" class="external text" href="https://api.semanticscholar.org/CorpusID:248419908">248419908</a>.</cite></span>
</li>
<li id="cite_note-42"><span class="mw-cite-backlink"><b><a href="#cite_ref-42">^</a></b></span> <span class="reference-text">Laban, G., Morrison, V., Kappas, A., & Cross, E. S. (2025). Coping with emotional distress via self-disclosure to robots: An intervention with caregivers. International Journal of Social Robotics. <a rel="nofollow" class="external free" href="https://doi.org/10.1007/s12369-024-01207-0">https://doi.org/10.1007/s12369-024-01207-0</a></span>
</li>
<li id="cite_note-43"><span class="mw-cite-backlink"><b><a href="#cite_ref-43">^</a></b></span> <span class="reference-text"><cite id="CITEREFCurtis2017" class="citation news cs1">Curtis, Sophie (2017-07-28). <a rel="nofollow" class="external text" href="http://www.mirror.co.uk/tech/creepy-looking-humanoid-robot-helps-9768571">"This creepy-looking humanoid robot has a very important purpose"</a>. <i><a href="Daily_Mirror" title="Daily Mirror">The Mirror</a></i><span class="reference-accessdate">. Retrieved <span class="nowrap">2019-10-28</span></span>.</cite></span>
</li>
<li id="cite_note-:4-44"><span class="mw-cite-backlink">^ <a href="#cite_ref-:4_44-0"><sup><i><b>a</b></i></sup></a> <a href="#cite_ref-:4_44-1"><sup><i><b>b</b></i></sup></a> <a href="#cite_ref-:4_44-2"><sup><i><b>c</b></i></sup></a> <a href="#cite_ref-:4_44-3"><sup><i><b>d</b></i></sup></a> <a href="#cite_ref-:4_44-4"><sup><i><b>e</b></i></sup></a></span> <span class="reference-text"><cite id="CITEREFBegumSernaYanco2016" class="citation journal cs1">Begum, Momotaz; Serna, Richard W.; <a href="Holly_Yanco" title="Holly Yanco">Yanco, Holly A.</a> (April 2016). "Are robots ready to deliver autism interventions? A comprehensive review". <i>International Journal of Social Robotics</i>. <b>8</b> (2): <span class="nowrap">157–</span>181. <a href="Doi_(identifier)" class="mw-redirect" title="Doi (identifier)">doi</a>:<a rel="nofollow" class="external text" href="https://doi.org/10.1007%2Fs12369-016-0346-y">10.1007/s12369-016-0346-y</a>. <a href="ISSN_(identifier)" class="mw-redirect" title="ISSN (identifier)">ISSN</a> <a rel="nofollow" class="external text" href="https://search.worldcat.org/issn/1875-4791">1875-4791</a>. <a href="S2CID_(identifier)" class="mw-redirect" title="S2CID (identifier)">S2CID</a> <a rel="nofollow" class="external text" href="https://api.semanticscholar.org/CorpusID:15396137">15396137</a>.</cite></span>
</li>
<li id="cite_note-45"><span class="mw-cite-backlink"><b><a href="#cite_ref-45">^</a></b></span> <span class="reference-text"><cite id="CITEREFBelpaemeKennedyRamachandranScassellati2018" class="citation journal cs1">Belpaeme, Tony; Kennedy, James; Ramachandran, Aditi; Scassellati, Brian; Tanaka, Fumihide (2018-08-22). <a rel="nofollow" class="external text" href="https://doi.org/10.1126%2Fscirobotics.aat5954">"Social robots for education: A review"</a>. <i>Science Robotics</i>. <b>3</b> (21): eaat5954. <a href="Doi_(identifier)" class="mw-redirect" title="Doi (identifier)">doi</a>:<span class="id-lock-free" title="Freely accessible"><a rel="nofollow" class="external text" href="https://doi.org/10.1126%2Fscirobotics.aat5954">10.1126/scirobotics.aat5954</a></span>. <a href="ISSN_(identifier)" class="mw-redirect" title="ISSN (identifier)">ISSN</a> <a rel="nofollow" class="external text" href="https://search.worldcat.org/issn/2470-9476">2470-9476</a>. <a href="PMID_(identifier)" class="mw-redirect" title="PMID (identifier)">PMID</a> <a rel="nofollow" class="external text" href="https://pubmed.ncbi.nlm.nih.gov/33141719">33141719</a>. <a href="S2CID_(identifier)" class="mw-redirect" title="S2CID (identifier)">S2CID</a> <a rel="nofollow" class="external text" href="https://api.semanticscholar.org/CorpusID:52033756">52033756</a>.</cite></span>
</li>
<li id="cite_note-46"><span class="mw-cite-backlink"><b><a href="#cite_ref-46">^</a></b></span> <span class="reference-text"><cite id="CITEREFCatlin2014" class="citation cs2">Catlin, Dave (2014), Cao, Yiwei; Väljataga, Terje; Tang, Jeff K.T.; Leung, Howard (eds.), <span class="id-lock-subscription" title="Paid subscription required"><a rel="nofollow" class="external text" href="http://link.springer.com/10.1007/978-3-319-13296-9_6">"Using Peer Assessment with Educational Robots"</a></span>, <i>New Horizons in Web Based Learning</i>, Lecture Notes in Computer Science, vol. 8699, Cham: Springer International Publishing, pp. <span class="nowrap">57–</span>65, <a href="Doi_(identifier)" class="mw-redirect" title="Doi (identifier)">doi</a>:<a rel="nofollow" class="external text" href="https://doi.org/10.1007%2F978-3-319-13296-9_6">10.1007/978-3-319-13296-9_6</a>, <a href="ISBN_(identifier)" class="mw-redirect" title="ISBN (identifier)">ISBN</a> <bdi>978-3-319-13295-2</bdi><span class="reference-accessdate">, retrieved <span class="nowrap">2023-03-01</span></span></cite></span>
</li>
<li id="cite_note-Biondi_932–946-47"><span class="mw-cite-backlink">^ <a href="#cite_ref-Biondi_932–946_47-0"><sup><i><b>a</b></i></sup></a> <a href="#cite_ref-Biondi_932–946_47-1"><sup><i><b>b</b></i></sup></a></span> <span class="reference-text"><cite id="CITEREFBiondiAlvarezJeong2019" class="citation journal cs1">Biondi, Francesco; Alvarez, Ignacio; Jeong, Kyeong-Ah (2019-07-03). "Human–Vehicle Cooperation in Automated Driving: A Multidisciplinary Review and Appraisal". <i>International Journal of Human–Computer Interaction</i>. <b>35</b> (11): <span class="nowrap">932–</span>946. <a href="Doi_(identifier)" class="mw-redirect" title="Doi (identifier)">doi</a>:<a rel="nofollow" class="external text" href="https://doi.org/10.1080%2F10447318.2018.1561792">10.1080/10447318.2018.1561792</a>. <a href="ISSN_(identifier)" class="mw-redirect" title="ISSN (identifier)">ISSN</a> <a rel="nofollow" class="external text" href="https://search.worldcat.org/issn/1044-7318">1044-7318</a>. <a href="S2CID_(identifier)" class="mw-redirect" title="S2CID (identifier)">S2CID</a> <a rel="nofollow" class="external text" href="https://api.semanticscholar.org/CorpusID:86447168">86447168</a>.</cite></span>
</li>
<li id="cite_note-:5-48"><span class="mw-cite-backlink">^ <a href="#cite_ref-:5_48-0"><sup><i><b>a</b></i></sup></a> <a href="#cite_ref-:5_48-1"><sup><i><b>b</b></i></sup></a></span> <span class="reference-text"><cite id="CITEREFGoodrichLinMorse2012" class="citation book cs1">Goodrich, M. A.; Lin, L.; Morse, B. S. (May 2012). "Using camera-equipped mini-UAVS to support collaborative wilderness search and rescue teams". <i>2012 International Conference on Collaboration Technologies and Systems (CTS)</i>. p. 638. <a href="Doi_(identifier)" class="mw-redirect" title="Doi (identifier)">doi</a>:<a rel="nofollow" class="external text" href="https://doi.org/10.1109%2FCTS.2012.6261008">10.1109/CTS.2012.6261008</a>. <a href="ISBN_(identifier)" class="mw-redirect" title="ISBN (identifier)">ISBN</a> <bdi>978-1-4673-1382-7</bdi>. <a href="S2CID_(identifier)" class="mw-redirect" title="S2CID (identifier)">S2CID</a> <a rel="nofollow" class="external text" href="https://api.semanticscholar.org/CorpusID:13164847">13164847</a>.</cite></span>
</li>
<li id="cite_note-:6-49"><span class="mw-cite-backlink">^ <a href="#cite_ref-:6_49-0"><sup><i><b>a</b></i></sup></a> <a href="#cite_ref-:6_49-1"><sup><i><b>b</b></i></sup></a></span> <span class="reference-text"><cite id="CITEREFMorseEnghGoodrich2010" class="citation book cs1">Morse, Bryan S.; Engh, Cameron H.; Goodrich, Michael A. (2010). <a rel="nofollow" class="external text" href="http://portal.acm.org/citation.cfm?doid=1734454.1734548">"UAV video coverage quality maps and prioritized indexing for wilderness search and rescue"</a>. <a rel="nofollow" class="external text" href="https://scholarsarchive.byu.edu/context/facpub/article/1106/viewcontent/IR_CISOPTR_1164.pdf"><i>Proceeding of the 5th ACM/IEEE international conference on Human-robot interaction - HRI '10</i></a> <span class="cs1-format">(PDF)</span>. Osaka, Japan: ACM Press. pp. <span class="nowrap">227–</span>234. <a href="Doi_(identifier)" class="mw-redirect" title="Doi (identifier)">doi</a>:<a rel="nofollow" class="external text" href="https://doi.org/10.1145%2F1734454.1734548">10.1145/1734454.1734548</a>. <a href="ISBN_(identifier)" class="mw-redirect" title="ISBN (identifier)">ISBN</a> <bdi>9781424448937</bdi>. <a href="S2CID_(identifier)" class="mw-redirect" title="S2CID (identifier)">S2CID</a> <a rel="nofollow" class="external text" href="https://api.semanticscholar.org/CorpusID:11511362">11511362</a>.</cite></span>
</li>
<li id="cite_note-:7-50"><span class="mw-cite-backlink">^ <a href="#cite_ref-:7_50-0"><sup><i><b>a</b></i></sup></a> <a href="#cite_ref-:7_50-1"><sup><i><b>b</b></i></sup></a> <a href="#cite_ref-:7_50-2"><sup><i><b>c</b></i></sup></a></span> <span class="reference-text"><cite id="CITEREFBernardMartusevichRolinsSpence2018" class="citation conference cs1">Bernard, Tiziano; Martusevich, Kirill; Rolins, Armando A.; Spence, Isaac; Troshchenko, Alexander; Chintalapati, Sunil (2018-09-17). <i>A novel Mars rover concept for astronaut operational support on surface EVA missions</i>. 2018 AIAA SPACE and Astronautics Forum and Exposition. Orlando, FL: American Institute of Aeronautics and Astronautics. <a href="Doi_(identifier)" class="mw-redirect" title="Doi (identifier)">doi</a>:<a rel="nofollow" class="external text" href="https://doi.org/10.2514%2F6.2018-5154">10.2514/6.2018-5154</a>. <a href="ISBN_(identifier)" class="mw-redirect" title="ISBN (identifier)">ISBN</a> <bdi>9781624105753</bdi>.</cite></span>
</li>
<li id="cite_note-51"><span class="mw-cite-backlink"><b><a href="#cite_ref-51">^</a></b></span> <span class="reference-text"><cite class="citation web cs1"><a rel="nofollow" class="external text" href="https://publication.sipmm.edu.sg/emerging-technology-application-agri-food-sector/#Robotics_in_the_Agri-Food_Sector">"Emerging Technology for Application in the Agri-Food Sector - SIPMM Publications"</a>. <i>publication.sipmm.edu.sg</i>. 2019-01-01<span class="reference-accessdate">. Retrieved <span class="nowrap">2022-11-15</span></span>.</cite></span>
</li>
<li id="cite_note-52"><span class="mw-cite-backlink"><b><a href="#cite_ref-52">^</a></b></span> <span class="reference-text"><cite id="CITEREFBartneckMichio_Okada2001" class="citation conference cs1">Bartneck, Christoph; Michio Okada (2001). <a rel="nofollow" class="external text" href="http://bartneck.de/publications/2001/roboticUserInterfaces/bartneckHC2001.pdf">"Robotic User Interfaces"</a> <span class="cs1-format">(PDF)</span>. <i>Proceedings of the Human and Computer Conference</i>. pp. <span class="nowrap">130–</span>140.</cite></span>
</li>
<li id="cite_note-53"><span class="mw-cite-backlink"><b><a href="#cite_ref-53">^</a></b></span> <span class="reference-text"><cite id="CITEREFBartneck2011" class="citation journal cs1">Bartneck, Christoph (February 2011). <a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3016230">"The end of the beginning: a reflection on the first five years of the HRI conference"</a>. <i>Scientometrics</i>. <b>86</b> (2): <span class="nowrap">487–</span>504. <a href="Doi_(identifier)" class="mw-redirect" title="Doi (identifier)">doi</a>:<a rel="nofollow" class="external text" href="https://doi.org/10.1007%2Fs11192-010-0281-x">10.1007/s11192-010-0281-x</a>. <a href="PMC_(identifier)" class="mw-redirect" title="PMC (identifier)">PMC</a> <span class="id-lock-free" title="Freely accessible"><a rel="nofollow" class="external text" href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3016230">3016230</a></span>. <a href="PMID_(identifier)" class="mw-redirect" title="PMID (identifier)">PMID</a> <a rel="nofollow" class="external text" href="https://pubmed.ncbi.nlm.nih.gov/21297856">21297856</a>.</cite></span>
</li>
<li id="cite_note-hri-textbook-54"><span class="mw-cite-backlink"><b><a href="#cite_ref-hri-textbook_54-0">^</a></b></span> <span class="reference-text"><cite id="CITEREFBartneckBelpaemeEysselKanda2019" class="citation book cs1">Bartneck, Christoph; Belpaeme, Tony; Eyssel, Friederike; Kanda, Takayuki; Keijsers, Merel; Šabanović, Selma (2019). <a rel="nofollow" class="external text" href="https://www.human-robot-interaction.org"><i>Human–Robot Interaction - An Introduction</i></a>. Cambridge, UK: Cambridge University Press. <a href="ISBN_(identifier)" class="mw-redirect" title="ISBN (identifier)">ISBN</a> <bdi>9781108735407</bdi><span class="reference-accessdate">. Retrieved <span class="nowrap">27 January</span> 2020</span>.</cite></span>
</li>
<li id="cite_note-55"><span class="mw-cite-backlink"><b><a href="#cite_ref-55">^</a></b></span> <span class="reference-text"><cite class="citation web cs1"><a rel="nofollow" class="external text" href="https://www.human-robot-interaction.org/">"Human Robot Interaction – Share and enjoy!"</a>.</cite></span>
</li>
<li id="cite_note-56"><span class="mw-cite-backlink"><b><a href="#cite_ref-56">^</a></b></span> <span class="reference-text"><cite id="CITEREFKanda2012" class="citation book cs1">Kanda, Takayuki (2012). <i>Human–Robot Interaction in Social Robotics</i>. Boca Raton, FL: CRC Press. <a href="ISBN_(identifier)" class="mw-redirect" title="ISBN (identifier)">ISBN</a> <bdi>9781466506978</bdi>.</cite></span>
</li>
<li id="cite_note-57"><span class="mw-cite-backlink"><b><a href="#cite_ref-57">^</a></b></span> <span class="reference-text"><cite id="CITEREFBreazealDautenhahnTakayuki2016" class="citation book cs1">Breazeal, Cynthia; Dautenhahn, Kerstin; Takayuki, Kanda (2016). "Social Robotics". In Siciliano, Bruno; Khatib, Oussama (eds.). <i>Springer Handbook of Robotics</i>. Berlin: Springer. pp. <span class="nowrap">1935–</span>1972. <a href="ISBN_(identifier)" class="mw-redirect" title="ISBN (identifier)">ISBN</a> <bdi>9783319325507</bdi>.</cite></span>
</li>
<li id="cite_note-58"><span class="mw-cite-backlink"><b><a href="#cite_ref-58">^</a></b></span> <span class="reference-text"><cite class="citation web cs1"><a rel="nofollow" class="external text" href="https://www.edx.org/professional-certificate/ucx-human-robot-interaction">"Professional Certificate in Human–Robot Interaction"</a>. <i>edX</i>. Canterbury, UK: <a href="University_of_Canterbury" title="University of Canterbury">University of Canterbury</a> (UCx). 2021-09-01<span class="reference-accessdate">. Retrieved <span class="nowrap">2021-09-01</span></span>.</cite></span>
</li>
<li id="cite_note-59"><span class="mw-cite-backlink"><b><a href="#cite_ref-59">^</a></b></span> <span class="reference-text"><cite class="citation web cs1"><a rel="nofollow" class="external text" href="https://www.edx.org/course/introduction-to-human-robot-interaction">"Introduction to Human–Robot Interaction"</a>. <i>edX</i>. Canterbury, UK: <a href="University_of_Canterbury" title="University of Canterbury">University of Canterbury</a> (UCx). 2021-09-01<span class="reference-accessdate">. Retrieved <span class="nowrap">2021-09-01</span></span>.</cite></span>
</li>
<li id="cite_note-60"><span class="mw-cite-backlink"><b><a href="#cite_ref-60">^</a></b></span> <span class="reference-text"><cite class="citation web cs1"><a rel="nofollow" class="external text" href="https://www.edx.org/course/methods-and-application-in-human-robot-interaction">"Methods and Application in Human–Robot Interaction"</a>. <i>edX</i>. Canterbury, UK: <a href="University_of_Canterbury" title="University of Canterbury">University of Canterbury</a> (UCx). 2021-09-01<span class="reference-accessdate">. Retrieved <span class="nowrap">2021-09-01</span></span>.</cite></span>
</li>
</ol></div>
<div class="mw-heading mw-heading2"><h2 id="External_resources">External resources</h2></div>
<ul><li><cite class="citation web cs1"><a rel="nofollow" class="external text" href="http://www.hakenberg.de/automation/j2b2_human_interaction.htm">"Human interaction with the robot J2B2"</a>. <i>hakenberg.de</i>. Algorithms, graphics, and video material.</cite></li>
<li><cite id="CITEREFHottelet,_Ulrich2009" class="citation news cs1 cs1-prop-unfit">Hottelet, Ulrich (June 2009). <a rel="nofollow" class="external text" href="https://web.archive.org/web/20120112102726/http://african-times.com/index.php?option=com_content&view=article&id=2478%3Aalbert-is-not-happy&catid=73%3Ajune-2009-business&Itemid=63">"Albert is not happy – How robots learn to live with people"</a>. <i>African Times</i>. Archived from the original on 2012-01-12.</cite></li></ul>
<div class="navbox-styles"><style data-mw-deduplicate="TemplateStyles:r1129693374">
/* start https://en.wikipedia.org/ */
.mw-parser-output .hlist dl,.mw-parser-output .hlist ol,.mw-parser-output .hlist ul{margin:0;padding:0}.mw-parser-output .hlist dd,.mw-parser-output .hlist dt,.mw-parser-output .hlist li{margin:0;display:inline}.mw-parser-output .hlist.inline,.mw-parser-output .hlist.inline dl,.mw-parser-output .hlist.inline ol,.mw-parser-output .hlist.inline ul,.mw-parser-output .hlist dl dl,.mw-parser-output .hlist dl ol,.mw-parser-output .hlist dl ul,.mw-parser-output .hlist ol dl,.mw-parser-output .hlist ol ol,.mw-parser-output .hlist ol ul,.mw-parser-output .hlist ul dl,.mw-parser-output .hlist ul ol,.mw-parser-output .hlist ul ul{display:inline}.mw-parser-output .hlist .mw-empty-li{display:none}.mw-parser-output .hlist dt::after{content:": "}.mw-parser-output .hlist dd::after,.mw-parser-output .hlist li::after{content:" · ";font-weight:bold}.mw-parser-output .hlist dd:last-child::after,.mw-parser-output .hlist dt:last-child::after,.mw-parser-output .hlist li:last-child::after{content:none}.mw-parser-output .hlist dd dd:first-child::before,.mw-parser-output .hlist dd dt:first-child::before,.mw-parser-output .hlist dd li:first-child::before,.mw-parser-output .hlist dt dd:first-child::before,.mw-parser-output .hlist dt dt:first-child::before,.mw-parser-output .hlist dt li:first-child::before,.mw-parser-output .hlist li dd:first-child::before,.mw-parser-output .hlist li dt:first-child::before,.mw-parser-output .hlist li li:first-child::before{content:" (";font-weight:normal}.mw-parser-output .hlist dd dd:last-child::after,.mw-parser-output .hlist dd dt:last-child::after,.mw-parser-output .hlist dd li:last-child::after,.mw-parser-output .hlist dt dd:last-child::after,.mw-parser-output .hlist dt dt:last-child::after,.mw-parser-output .hlist dt li:last-child::after,.mw-parser-output .hlist li dd:last-child::after,.mw-parser-output .hlist li dt:last-child::after,.mw-parser-output .hlist li li:last-child::after{content:")";font-weight:normal}.mw-parser-output .hlist ol{counter-reset:listitem}.mw-parser-output .hlist ol>li{counter-increment:listitem}.mw-parser-output .hlist ol>li::before{content:" "counter(listitem)"\a0 "}.mw-parser-output .hlist dd ol>li:first-child::before,.mw-parser-output .hlist dt ol>li:first-child::before,.mw-parser-output .hlist li ol>li:first-child::before{content:" ("counter(listitem)"\a0 "}
/* end https://en.wikipedia.org/ */
</style><style data-mw-deduplicate="TemplateStyles:r1236075235">
/* start https://en.wikipedia.org/ */
.mw-parser-output .navbox{box-sizing:border-box;border:1px solid #a2a9b1;width:100%;clear:both;font-size:88%;text-align:center;padding:1px;margin:1em auto 0}.mw-parser-output .navbox .navbox{margin-top:0}.mw-parser-output .navbox+.navbox,.mw-parser-output .navbox+.navbox-styles+.navbox{margin-top:-1px}.mw-parser-output .navbox-inner,.mw-parser-output .navbox-subgroup{width:100%}.mw-parser-output .navbox-group,.mw-parser-output .navbox-title,.mw-parser-output .navbox-abovebelow{padding:0.25em 1em;line-height:1.5em;text-align:center}.mw-parser-output .navbox-group{white-space:nowrap;text-align:right}.mw-parser-output .navbox,.mw-parser-output .navbox-subgroup{background-color:#fdfdfd}.mw-parser-output .navbox-list{line-height:1.5em;border-color:#fdfdfd}.mw-parser-output .navbox-list-with-group{text-align:left;border-left-width:2px;border-left-style:solid}.mw-parser-output tr+tr>.navbox-abovebelow,.mw-parser-output tr+tr>.navbox-group,.mw-parser-output tr+tr>.navbox-image,.mw-parser-output tr+tr>.navbox-list{border-top:2px solid #fdfdfd}.mw-parser-output .navbox-title{background-color:#ccf}.mw-parser-output .navbox-abovebelow,.mw-parser-output .navbox-group,.mw-parser-output .navbox-subgroup .navbox-title{background-color:#ddf}.mw-parser-output .navbox-subgroup .navbox-group,.mw-parser-output .navbox-subgroup .navbox-abovebelow{background-color:#e6e6ff}.mw-parser-output .navbox-even{background-color:#f7f7f7}.mw-parser-output .navbox-odd{background-color:transparent}.mw-parser-output .navbox .hlist td dl,.mw-parser-output .navbox .hlist td ol,.mw-parser-output .navbox .hlist td ul,.mw-parser-output .navbox td.hlist dl,.mw-parser-output .navbox td.hlist ol,.mw-parser-output .navbox td.hlist ul{padding:0.125em 0}.mw-parser-output .navbox .navbar{display:block;font-size:100%}.mw-parser-output .navbox-title .navbar{float:left;text-align:left;margin-right:0.5em}body.skin--responsive .mw-parser-output .navbox-image img{max-width:none!important}@media print{body.ns-0 .mw-parser-output .navbox{display:none!important}}
/* end https://en.wikipedia.org/ */
</style></div><div role="navigation" class="navbox" aria-labelledby="Robotics434" style="padding:3px"><table class="nowraplinks hlist mw-collapsible autocollapse navbox-inner" style="border-spacing:0;background:transparent;color:inherit"><tbody><tr><th scope="col" class="navbox-title" colspan="3"><style data-mw-deduplicate="TemplateStyles:r1239400231">
/* start https://en.wikipedia.org/ */
.mw-parser-output .navbar{display:inline;font-size:88%;font-weight:normal}.mw-parser-output .navbar-collapse{float:left;text-align:left}.mw-parser-output .navbar-boxtext{word-spacing:0}.mw-parser-output .navbar ul{display:inline-block;white-space:nowrap;line-height:inherit}.mw-parser-output .navbar-brackets::before{margin-right:-0.125em;content:"[ "}.mw-parser-output .navbar-brackets::after{margin-left:-0.125em;content:" ]"}.mw-parser-output .navbar li{word-spacing:-0.125em}.mw-parser-output .navbar a>span,.mw-parser-output .navbar a>abbr{text-decoration:inherit}.mw-parser-output .navbar-mini abbr{font-variant:small-caps;border-bottom:none;text-decoration:none;cursor:inherit}.mw-parser-output .navbar-ct-full{font-size:114%;margin:0 7em}.mw-parser-output .navbar-ct-mini{font-size:114%;margin:0 4em}html.skin-theme-clientpref-night .mw-parser-output .navbar li a abbr{color:var(--color-base)!important}@media(prefers-color-scheme:dark){html.skin-theme-clientpref-os .mw-parser-output .navbar li a abbr{color:var(--color-base)!important}}@media print{.mw-parser-output .navbar{display:none!important}}
/* end https://en.wikipedia.org/ */
</style><div id="Robotics434" style="font-size:114%;margin:0 4em"><a href="Robotics" title="Robotics">Robotics</a></div></th></tr><tr><th scope="row" class="navbox-group" style="width:1%">Main articles</th><td class="navbox-list-with-group navbox-list navbox-odd" style="width:100%;padding:0"><div style="padding:0 0.25em">
<ul><li><a href="Outline_of_robotics" title="Outline of robotics">Outline</a></li>
<li><a href="Glossary_of_robotics" title="Glossary of robotics">Glossary</a></li>
<li><a href="Index_of_robotics_articles" title="Index of robotics articles">Index</a></li>
<li><a href="History_of_robots" title="History of robots">History</a></li>
<li><a href="Geography_of_robotics" title="Geography of robotics">Geography</a></li>
<li><a href="Robot_Hall_of_Fame" title="Robot Hall of Fame">Hall of Fame</a></li>
<li><a href="Robot_ethics" title="Robot ethics">Ethics</a></li>
<li><a href="Laws_of_robotics" title="Laws of robotics">Laws</a></li>
<li><a href="Robot_competition" title="Robot competition">Competitions</a></li>
<li><a href="Competitions_and_prizes_in_artificial_intelligence" title="Competitions and prizes in artificial intelligence">AI competitions</a></li></ul>
</div></td><td class="noviewer navbox-image" rowspan="8" style="width:1px;padding:0 0 0 2px"><div><span typeof="mw:File"></span></div></td></tr><tr><th scope="row" class="navbox-group" style="width:1%"><a href="Robot" title="Robot">Types</a></th><td class="navbox-list-with-group navbox-list navbox-even" style="width:100%;padding:0"><div style="padding:0 0.25em">
<ul><li><a href="Aerobot" title="Aerobot">Aerobot</a></li>
<li><a href="Anthropomorphic" class="mw-redirect" title="Anthropomorphic">Anthropomorphic</a>
<ul><li><a href="Humanoid_robot" title="Humanoid robot">Humanoid</a></li>
<li><a href="Android_(robot)" title="Android (robot)">Android</a></li>
<li><a href="Cyborg" title="Cyborg">Cyborg</a></li>
<li><a href="Gynoid" title="Gynoid">Gynoid</a></li></ul></li>
<li><a href="Claytronics" class="mw-redirect" title="Claytronics">Claytronics</a></li>
<li><a href="Companion_robot" title="Companion robot">Companion</a></li>
<li><a href="Automaton" title="Automaton">Automaton</a>
<ul><li><a href="Animatronics" title="Animatronics">Animatronic</a>
<ul><li><a href="Audio-Animatronics" title="Audio-Animatronics">Audio-Animatronics</a></li></ul></li></ul></li>
<li><a href="Industrial_robot" title="Industrial robot">Industrial</a></li>
<li><a href="Articulated_robot" title="Articulated robot">Articulated</a>
<ul><li><a href="Robotic_arm" title="Robotic arm">arm</a></li></ul></li>
<li><a href="Domestic_robot" title="Domestic robot">Domestic</a></li>
<li><a href="Educational_robotics" title="Educational robotics">Educational</a></li>
<li><a href="Entertainment_robot" title="Entertainment robot">Entertainment</a></li>
<li><a href="Juggling_robot" title="Juggling robot">Juggling</a></li>
<li><a href="Military_robot" title="Military robot">Military</a></li>
<li><a href="Medical_robot" title="Medical robot">Medical</a></li>
<li><a href="Service_robot" title="Service robot">Service</a></li>
<li><a href="Disability_robot" class="mw-redirect" title="Disability robot">Disability</a></li>
<li><a href="Agricultural_robot" title="Agricultural robot">Agricultural</a></li>
<li><a href="Automated_restaurant" title="Automated restaurant">Food service</a></li>
<li><a href="Automated_retail" title="Automated retail">Retail</a></li>
<li><a href="BEAM_robotics" title="BEAM robotics">BEAM robotics</a></li>
<li><a href="Soft_robotics" title="Soft robotics">Soft robotics</a></li></ul>
</div></td></tr><tr><th scope="row" class="navbox-group" style="width:1%">Classifications</th><td class="navbox-list-with-group navbox-list navbox-odd" style="width:100%;padding:0"><div style="padding:0 0.25em">
<ul><li><a href="Biorobotics" title="Biorobotics">Biorobotics</a></li>
<li><a href="Cloud_robotics" title="Cloud robotics">Cloud robotics</a></li>
<li><a href="Continuum_robot" title="Continuum robot">Continuum robot</a></li>
<li><a href="Unmanned_vehicle" class="mw-redirect" title="Unmanned vehicle">Unmanned vehicle</a>
<ul><li><a href="Unmanned_aerial_vehicle" title="Unmanned aerial vehicle">aerial</a></li>
<li><a href="Unmanned_ground_vehicle" title="Unmanned ground vehicle">ground</a></li></ul></li>
<li><a href="Mobile_robot" title="Mobile robot">Mobile robot</a></li>
<li><a href="Microbotics" title="Microbotics">Microbotics</a></li>
<li><a href="Nanorobotics" title="Nanorobotics">Nanorobotics</a></li>
<li><a href="Necrobotics" title="Necrobotics">Necrobotics</a></li>
<li><a href="Robotic_spacecraft" class="mw-redirect" title="Robotic spacecraft">Robotic spacecraft</a>
<ul><li><a href="Space_probe" class="mw-redirect" title="Space probe">Space probe</a></li></ul></li>
<li><a href="Swarm_robotics" title="Swarm robotics">Swarm</a></li>
<li><a href="Telerobotics" title="Telerobotics">Telerobotics</a></li>
<li><a href="Autonomous_underwater_vehicle" title="Autonomous underwater vehicle">Underwater</a>
<ul><li><a href="Remotely_operated_underwater_vehicle" title="Remotely operated underwater vehicle">remotely-operated</a></li>
<li><a href="Robotic_fish" class="mw-redirect" title="Robotic fish">Robotic fish</a></li></ul></li></ul>
</div></td></tr><tr><th scope="row" class="navbox-group" style="width:1%"><a href="Robot_locomotion" title="Robot locomotion">Locomotion</a></th><td class="navbox-list-with-group navbox-list navbox-even" style="width:100%;padding:0"><div style="padding:0 0.25em">
<ul><li><a href="Continuous_track" title="Continuous track">Tracks</a></li>
<li><a href="Legged_robot" title="Legged robot">Walking</a>
<ul><li><a href="Hexapod_(robotics)" title="Hexapod (robotics)">Hexapod</a></li></ul></li>
<li><a href="Climber_(BEAM)" class="mw-redirect" title="Climber (BEAM)">Climbing</a></li>
<li><a href="Electric_unicycle" title="Electric unicycle">Electric unicycle</a></li>
<li><a href="Robotic_fin" class="mw-redirect" title="Robotic fin">Robotic fins</a></li></ul>
</div></td></tr><tr><th scope="row" class="navbox-group" style="width:1%"><a href="Robotic_navigation" class="mw-redirect" title="Robotic navigation">Navigation</a> and <a href="Robotic_mapping" title="Robotic mapping">mapping</a></th><td class="navbox-list-with-group navbox-list navbox-odd" style="width:100%;padding:0"><div style="padding:0 0.25em">
<ul><li><a href="Motion_planning" title="Motion planning">Motion planning</a></li>
<li><a href="Simultaneous_localization_and_mapping" title="Simultaneous localization and mapping">Simultaneous localization and mapping</a></li>
<li><a href="Visual_odometry" title="Visual odometry">Visual odometry</a></li>
<li><a href="Vision-guided_robot_systems" title="Vision-guided robot systems">Vision-guided robot systems</a></li></ul>
</div></td></tr><tr><th scope="row" class="navbox-group" style="width:1%">Research</th><td class="navbox-list-with-group navbox-list navbox-even" style="width:100%;padding:0"><div style="padding:0 0.25em">
<ul><li><a href="Evolutionary_robotics" title="Evolutionary robotics">Evolutionary</a></li>
<li><a href="Robot_kit" title="Robot kit">Kits</a></li>
<li><a href="Robotics_simulator" title="Robotics simulator">Simulator</a></li>
<li><a href="Robotics_suite" title="Robotics suite">Suite</a></li>
<li><a href="Open-source_robotics" title="Open-source robotics">Open-source</a></li>
<li><a href="Robot_software" title="Robot software">Software</a></li>
<li><a href="Adaptable_robotics" title="Adaptable robotics">Adaptable</a></li>
<li><a href="Developmental_robotics" title="Developmental robotics">Developmental</a></li>
<li><a href="Robotic_paradigm" title="Robotic paradigm">Paradigms</a></li>
<li><a href="Perceptual_robotics" title="Perceptual robotics">Perceptual</a></li>
<li><a href="Situated_robotics" title="Situated robotics">Situated</a></li>
<li><a href="Ubiquitous_robot" title="Ubiquitous robot">Ubiquitous</a></li></ul>
</div></td></tr><tr><th scope="row" class="navbox-group" style="width:1%"><a href="List_of_robotics_companies" title="List of robotics companies">Companies</a></th><td class="navbox-list-with-group navbox-list navbox-odd" style="width:100%;padding:0"><div style="padding:0 0.25em">
<ul><li><a href="ABB" title="ABB">ABB</a></li>
<li><a href="Amazon_Robotics" title="Amazon Robotics">Amazon Robotics</a></li>
<li><a href="Anybots" title="Anybots">Anybots</a></li>
<li><a href="Barrett_Technology" title="Barrett Technology">Barrett Technology</a></li>
<li><a href="Boston_Dynamics" title="Boston Dynamics">Boston Dynamics</a></li>
<li><a href="Doosan_Robotics" title="Doosan Robotics">Doosan Robotics</a></li>
<li><a href="Energid_Technologies" title="Energid Technologies">Energid Technologies</a></li>
<li><a href="FarmWise" title="FarmWise">FarmWise</a></li>
<li><a href="FANUC" title="FANUC">FANUC</a></li>
<li><a href="Figure_AI" title="Figure AI">Figure AI</a></li>
<li><a href="Foster-Miller" title="Foster-Miller">Foster-Miller</a></li>
<li><a href="Harvest_Automation" title="Harvest Automation">Harvest Automation</a></li>
<li><a href="HD_Hyundai_Robotics" title="HD Hyundai Robotics">HD Hyundai Robotics</a></li>
<li><a href="Honeybee_Robotics" title="Honeybee Robotics">Honeybee Robotics</a></li>
<li><a href="Intuitive_Surgical" title="Intuitive Surgical">Intuitive Surgical</a></li>
<li><a href="IRobot" title="IRobot">IRobot</a></li>
<li><a href="KUKA" title="KUKA">KUKA</a></li>
<li><a href="Rainbow_Robotics" title="Rainbow Robotics">Rainbow Robotics</a></li>
<li><a href="Starship_Technologies" title="Starship Technologies">Starship Technologies</a></li>
<li><a href="Symbotic" title="Symbotic">Symbotic</a></li>
<li><a href="Universal_Robotics" title="Universal Robotics">Universal Robotics</a></li>
<li><a href="Wolf_Robotics" title="Wolf Robotics">Wolf Robotics</a></li>
<li><a href="Yaskawa_Electric_Corporation" title="Yaskawa Electric Corporation">Yaskawa</a></li></ul>
</div></td></tr><tr><th scope="row" class="navbox-group" style="width:1%">Related</th><td class="navbox-list-with-group navbox-list navbox-even" style="width:100%;padding:0"><div style="padding:0 0.25em">
<ul><li><a href="Critique_of_work" title="Critique of work">Critique of work</a></li>
<li><a href="Powered_exoskeleton" class="mw-redirect" title="Powered exoskeleton">Powered exoskeleton</a></li>
<li><a href="Workplace_robotics_safety" title="Workplace robotics safety">Workplace robotics safety</a>
<ul><li><a href="Robotic_tech_vest" title="Robotic tech vest">Robotic tech vest</a></li></ul></li>
<li><a href="Technological_unemployment" title="Technological unemployment">Technological unemployment</a></li>
<li><a href="Terrainability" title="Terrainability">Terrainability</a></li>
<li><a href="List_of_fictional_robots_and_androids" title="List of fictional robots and androids">Fictional robots</a></li></ul>
</div></td></tr><tr><td class="navbox-abovebelow" colspan="3"><div>
<ul><li><span class="noviewer" typeof="mw:File"><span title="Category"></span></span> <b>Category</b></li>
<li><span class="noviewer" typeof="mw:File"><span title="Outline"></span></span> <b><a href="Outline_of_robotics" title="Outline of robotics">Outline</a></b></li></ul>
</div></td></tr></tbody></table></div></div><!--htdig_noindex--><div><div class="zim-footer">
This article is issued from <a class="external text" title="Last edited on 2025-06-30" href="https://en.wikipedia.org/wiki/?title=Human%E2%80%93robot_interaction&oldid=1298030395">Wikipedia</a>. The text is available under <a class="external text" href="https://creativecommons.org/licenses/by-sa/4.0/deed.en">Creative Commons Attribution-Share Alike 4.0</a> unless otherwise noted. Additional terms may apply for the media files.
</div>
</div><!--/htdig_noindex--></div>
</div>
</main>
</div>
</div>
</div>
</body></html>