Results for 'Robotic systems'

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  1. Reactive robotic systems.Ronald C. Arkin - 1995 - In Michael A. Arbib (ed.), Handbook of Brain Theory and Neural Networks. MIT Press. pp. 793--796.
  2.  10
    Modular robotic systems: Methods and algorithms for abstraction, planning, control, and synchronization.Hossein Ahmadzadeh & Ellips Masehian - 2015 - Artificial Intelligence 223 (C):27-64.
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    Online Optimal Control of Robotic Systems with Single Critic NN-Based Reinforcement Learning.Xiaoyi Long, Zheng He & Zhongyuan Wang - 2021 - Complexity 2021:1-7.
    This paper suggests an online solution for the optimal tracking control of robotic systems based on a single critic neural network -based reinforcement learning method. To this end, we rewrite the robotic system model as a state-space form, which will facilitate the realization of optimal tracking control synthesis. To maintain the tracking response, a steady-state control is designed, and then an adaptive optimal tracking control is used to ensure that the tracking error can achieve convergence in an (...)
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  4. Inteligent Line Follower Mini-Robot System.Román Osorio C.-José A. Romero & Mario Peña C.–Ismael López-Juárez - 2005 - In Alan Blackwell & David MacKay (eds.), Power. New York: Cambridge University Press. pp. 150mA.
     
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  5.  71
    Automatic decision-making and reliability in robotic systems: some implications in the case of robot weapons.Roberto Cordeschi - 2013 - AI and Society 28 (4):431-441.
    In this article, I shall examine some of the issues and questions involved in the technology of autonomous robots, a technology that has developed greatly and is advancing rapidly. I shall do so with reference to a particularly critical field: autonomous military robotic systems. In recent times, various issues concerning the ethical implications of these systems have been the object of increasing attention from roboticists, philosophers and legal experts. The purpose of this paper is not to deal (...)
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  6. A paradigm shift for robot ethics: from HRI to human–robot–system interaction.Aimee van Wynsberghe & Shuhong Li - 2019 - Medicolegal and Bioethics:11-21.
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  7. Robots and Respect: Assessing the Case Against Autonomous Weapon Systems.Robert Sparrow - 2016 - Ethics and International Affairs 30 (1):93-116.
    There is increasing speculation within military and policy circles that the future of armed conflict is likely to include extensive deployment of robots designed to identify targets and destroy them without the direct oversight of a human operator. My aim in this paper is twofold. First, I will argue that the ethical case for allowing autonomous targeting, at least in specific restricted domains, is stronger than critics have acknowledged. Second, I will attempt to uncover, explicate, and defend the intuition that (...)
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  8. An Evaluation Schema for the Ethical Use of Autonomous Robotic Systems in Security Applications.Markus Christen, Thomas Burri, Joseph O. Chapa, Raphael Salvi, Filippo Santoni de Sio & John P. Sullins - 2017 - University of Zurich Digital Society Initiative White Paper Series, No. 1.
    We propose a multi-step evaluation schema designed to help procurement agencies and others to examine the ethical dimensions of autonomous systems to be applied in the security sector, including autonomous weapons systems.
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  9.  15
    Practical Bipartite Tracking for Networked Robotic Systems via Fixed-Time Estimator-Based Control.Peng Su, Jinqiang Gan, Teng-Fei Ding, Chang-Duo Liang & Ming-Feng Ge - 2021 - Complexity 2021:1-15.
    In this paper, the fixed-time practical bipartite tracking problem for the networked robotic systems with parametric uncertainties, input disturbances, and directed signed graphs is investigated. A new fixed-time estimator-based control algorithm for the NRSs is presented to address the abovementioned problem. By applying a sliding surface and the time base generator approach, a new stability analysis method is proposed to achieve the fixed-time practical bipartite tracking for the NRSs. We also derive the upper bound of the convergence time (...)
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  10.  21
    Position/Force Tracking Impedance Control for Robotic Systems with Uncertainties Based on Adaptive Jacobian and Neural Network.Jinzhu Peng, Zeqi Yang & Tianlei Ma - 2019 - Complexity 2019:1-16.
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  11.  31
    Delay-Dependent Stability in Uncalibrated Image-Based Dynamic Visual Servoing Robotic System.Tao Li, Hui Zhao & Yu Chang - 2018 - Complexity 2018:1-14.
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  12.  23
    Children's referent selection and word learning: Insights from a developmental robotic system.Katherine E. Twomey, Anthony F. Morse, Angelo Cangelosi & Jessica S. Horst - 2016 - Interaction Studies 17 (1):101-127.
    This article is currently available as a free download on Ingenta Connect.
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  13.  78
    Backstepping Output Feedback Control for the Stochastic Nonlinear System Based on Variable Function Constraints with the Subsea Intelligent Electroexecution Robot System.Long-Chuan Guo, Jing Ni, Jing-Biao Liu, Xiang-Kun Fang, Qing-Hua Meng & Yu-Dong Peng - 2021 - Complexity 2021:1-15.
    The output feedback controller is designed for a class of stochastic nonlinear systems that satisfy uncertain function growth conditions for the first time. The multivariate function growth condition has greatly relaxed the restrictions on the drift and diffusion terms in the original stochastic nonlinear system. Here, we cleverly handle the problem of uncertain functions in the scaling process through the function maxima theory so that the Ito differential system can achieve output stabilization through Lyapunov function design and the solution (...)
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  14.  8
    A Q-Learning-Based Parameters Adaptive Algorithm for Formation Tracking Control of Multi-Mobile Robot Systems.Chen Zhang, Wen Qin, Ming-Can Fan, Ting Wang & Mou-Quan Shen - 2022 - Complexity 2022:1-19.
    This paper proposes an adaptive formation tracking control algorithm optimized by Q-learning scheme for multiple mobile robots. In order to handle the model uncertainties and external disturbances, a desired linear extended state observer is designed to develop an adaptive formation tracking control strategy. Then an adaptive method of sliding mode control parameters optimized by Q-learning scheme is employed, which can avoid the complex parameter tuning process. Furthermore, the stability of the closed-loop control system is rigorously proved by means of matrix (...)
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  15.  17
    Working with a robot: Exploring relationship potential in human–robot systems.Debra Bernstein, Kevin Crowley & Illah Nourbakhsh - 2007 - Interaction Studies 8 (3):465-482.
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  16.  6
    A robot-based surveillance system for recognising distress hand signal.Virginia Riego del Castillo, Lidia Sánchez-González, Miguel Á González-Santamarta & Francisco J. Rodríguez Lera - forthcoming - Logic Journal of the IGPL.
    Unfortunately, there are still cases of domestic violence or situations where it is necessary to call for help without arousing the suspicion of the aggressor. In these situations, the help signal devised by the Canadian Women’s Foundation has proven to be effective in reporting a risky situation. By displaying a sequence of hand signals, it is possible to report that help is needed. This work presents a vision-based system that detects this sequence and implements it in a social robot, so (...)
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  17.  14
    Epigenetic robotics: Modelling cognitive development in robotic systems.Giorgio Metta & Luc Berthouze - 2006 - Interaction Studies 7 (2):129-134.
  18.  5
    Geometric backtracking for combined task and motion planning in robotic systems.Julien Bidot, Lars Karlsson, Fabien Lagriffoul & Alessandro Saffiotti - 2017 - Artificial Intelligence 247 (C):229-265.
  19.  28
    Finite-Time Switched Second-Order Sliding-Mode Control of Nonholonomic Wheeled Mobile Robot Systems.Hao Ce, Wang Hongbin, Cheng Xiaoyan, Zhou Zhen, Ge Shungang & Hu Zhongquan - 2018 - Complexity 2018:1-10.
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  20. Attributing Agency to Automated Systems: Reflections on Human–Robot Collaborations and Responsibility-Loci.Sven Nyholm - 2018 - Science and Engineering Ethics 24 (4):1201-1219.
    Many ethicists writing about automated systems attribute agency to these systems. Not only that; they seemingly attribute an autonomous or independent form of agency to these machines. This leads some ethicists to worry about responsibility-gaps and retribution-gaps in cases where automated systems harm or kill human beings. In this paper, I consider what sorts of agency it makes sense to attribute to most current forms of automated systems, in particular automated cars and military robots. I argue (...)
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  21. How Robots’ Unintentional Metacommunication Affects Human–Robot Interactions. A Systemic Approach.Piercosma Bisconti - 2021 - Minds and Machines 31 (4):487-504.
    In this paper, we theoretically address the relevance of unintentional and inconsistent interactional elements in human–robot interactions. We argue that elements failing, or poorly succeeding, to reproduce a humanlike interaction create significant consequences in human–robot relational patterns and may affect human–human relations. When considering social interactions as systems, the absence of a precise interactional element produces a general reshaping of the interactional pattern, eventually generating new types of interactional settings. As an instance of this dynamic, we study the absence (...)
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  22.  35
    Can Robotic AI Systems Be Virtuous and Why Does This Matter?Mihaela Constantinescu & Roger Crisp - 2022 - International Journal of Social Robotics 14 (6):1547–1557.
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  23. Robot Care Ethics Between Autonomy and Vulnerability: Coupling Principles and Practices in Autonomous Systems for Care.Alberto Pirni, Maurizio Balistreri, Steven Umbrello, Marianna Capasso & Federica Merenda - 2021 - Frontiers in Robotics and AI 8 (654298):1-11.
    Technological developments involving robotics and artificial intelligence devices are being employed evermore in elderly care and the healthcare sector more generally, raising ethical issues and practical questions warranting closer considerations of what we mean by “care” and, subsequently, how to design such software coherently with the chosen definition. This paper starts by critically examining the existing approaches to the ethical design of care robots provided by Aimee van Wynsberghe, who relies on the work on the ethics of care by Joan (...)
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  24. Autonomous weapons systems, killer robots and human dignity.Amanda Sharkey - 2019 - Ethics and Information Technology 21 (2):75-87.
    One of the several reasons given in calls for the prohibition of autonomous weapons systems (AWS) is that they are against human dignity (Asaro, 2012; Docherty, 2014; Heyns, 2017; Ulgen, 2016). However there have been criticisms of the reliance on human dignity in arguments against AWS (Birnbacher, 2016; Pop, 2018; Saxton, 2016). This paper critically examines the relationship between human dignity and autonomous weapons systems. Three main types of objection to AWS are identified; (i) arguments based on technology (...)
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  25.  3
    A hybrid machine learning system to impute and classify a component-based robot.Nuño Basurto, Ángel Arroyo, Carlos Cambra & Álvaro Herrero - 2023 - Logic Journal of the IGPL 31 (2):338-351.
    In the field of cybernetic systems and more specifically in robotics, one of the fundamental objectives is the detection of anomalies in order to minimize loss of time. Following this idea, this paper proposes the implementation of a Hybrid Intelligent System in four steps to impute the missing values, by combining clustering and regression techniques, followed by balancing and classification tasks. This system applies regression models to each one of the clusters built on the instances of data set. Subsequently, (...)
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  26.  7
    Robot telepresence as a practical tool for responsible and open research in trustworthy autonomous systems.Richard Waterstone, Julie M. Robillard & Tony J. Prescott - 2022 - Journal of Responsible Technology 12 (C):100050.
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  27.  12
    System Optimization and Robustness Stability Control for GIS Inspection Robot in Complex Microgrid Networks.Yu Yan, Wei Jiang, Zhiping Luo, Jianjun Zhang & Weidong Liu - 2021 - Complexity 2021:1-12.
    GIS is important equipment in the substation system in a complex microgrid network. Due to the long-term service in harsh operation environments, the electrical performance of GIS equipment will be seriously affected. Therefore, the regular maintenance of GIS equipment in the substation system is a routine task so as to ensure the normal operation of the microgrid networks. The traditional method relies on manual labor, where not only with the low operation efficiency but also regarding some maintenance, labors cannot reach (...)
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  28.  63
    The dynamical systems accounts for phenomenology of immanent time: An interpretation by revisiting a robotics synthetic study.Jun Tani - 2004 - Journal of Consciousness Studies 11 (9):5-24.
    This paper discusses possible correspondences between the dynamical systems characteristics observed in our previously proposed cognitive model and phenomenological accounts of immanent time considered by Edmund Husserl. Our simulation experiments in the anticiparatory learning of a robot showed that encountering sensory-motor flow can be learned as segmented into chunks of reusable primitives with accompanying dynamic shifting between coherences and incoherences in local modules. It is considered that the sense of objective time might appear when the continuous sensory-motor flow input (...)
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  29.  91
    Should autonomous robots be pacifists?Ryan Tonkens - 2013 - Ethics and Information Technology 15 (2):109-123.
    Currently, the central questions in the philosophical debate surrounding the ethics of automated warfare are (1) Is the development and use of autonomous lethal robotic systems for military purposes consistent with (existing) international laws of war and received just war theory?; and (2) does the creation and use of such machines improve the moral caliber of modern warfare? However, both of these approaches have significant problems, and thus we need to start exploring alternative approaches. In this paper, I (...)
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  30. From Robotics and Cypernetic Vehicles to Autonomous Systems: the organism lost and found.C. Emmeche - 2001 - Communication and Cognition: An Interdisciplinary Quarterly Journal:159-187.
     
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  31.  8
    Virtual Submerged Floating Operational System for Robotic Manipulation.Qin Zhang, Jialei Zhang, Ahmed Chemori & Xianbo Xiang - 2018 - Complexity 2018:1-18.
    In this work, a virtual submerged floating operational system based on parallel and serial robotic platforms is proposed. The primary aim behind its development lies in carrying out simulated underwater manipulation experiments in an easier and safer way. This VSFOS is consisted of a six-degree-of-freedom parallel platform, an ABB serial manipulator, an inertial sensor, and a real-time industrial computer. The 6-DOF platform is used to simulate the movement of an underwater vehicle, whose attitude is measured by the inertial sensor. (...)
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  32.  54
    Robotic milking technologies and renegotiating situated ethical relationships on UK dairy farms.Lewis Holloway, Christopher Bear & Katy Wilkinson - 2014 - Agriculture and Human Values 31 (2):185-199.
    Robotic or automatic milking systems are novel technologies that take over the labor of dairy farming and reduce the need for human–animal interactions. Because robotic milking involves the replacement of ‘conventional’ twice-a-day milking managed by people with a system that supposedly allows cows the freedom to be milked automatically whenever they choose, some claim robotic milking has health and welfare benefits for cows, increases productivity, and has lifestyle advantages for dairy farmers. This paper examines how established (...)
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  33. Killer robots.Robert Sparrow - 2007 - Journal of Applied Philosophy 24 (1):62–77.
    The United States Army’s Future Combat Systems Project, which aims to manufacture a “robot army” to be ready for deployment by 2012, is only the latest and most dramatic example of military interest in the use of artificially intelligent systems in modern warfare. This paper considers the ethics of a decision to send artificially intelligent robots into war, by asking who we should hold responsible when an autonomous weapon system is involved in an atrocity of the sort that (...)
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  34. Institutional Robotics.Porfirio Silva & Pedro U. Lima - 2007 - In F. Almeida e Costa et al (ed.), Advances in Artificial Life. ECAL 2007. Springer Verlag.
    Pioneer approaches to Artificial Intelligence have traditionally neglected, in a chronological sequence, the agent body, the world where the agent is situated, and the other agents. With the advent of Collective Robotics approaches, important progresses were made toward embodying and situating the agents, together with the introduction of collective intelligence. However, the currently used models of social environments are still rather poor, jeopardizing the attempts of developing truly intelligent robot teams. In this paper, we propose a roadmap for a new (...)
     
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  35.  24
    Exploring Robotic Minds: Actions, Symbols, and Consciousness as Self-Organizing Dynamic Phenomena.Jun Tani - 2016 - Oxford University Press USA.
    In Exploring Robotic Minds: Actions, Symbols, and Consciousness as Self-Organizing Dynamic Phenomena, Jun Tani sets out to answer an essential and tantalizing question: How do our minds work? By providing an overview of his "synthetic neurorobotics" project, Tani reveals how symbols and concepts that represent the world can emerge in a neurodynamic structure--iterative interactions between the top-down subjective view, which proactively acts on the world, and the bottom-up recognition of the resultant perceptual reality. He argues that nontrivial problems of (...)
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  36.  13
    Neurosurgical robots and ethical challenges to medicine.Arthur Saniotis & Maciej Henneberg - 2021 - Ethics in Science and Environmental Politics 21:25-30.
    Over the last 20 yr, neurosurgical robots have been increasingly assisting in neurosurgical procedures. Surgical robots are considered to have noticeable advantages over humans, such as reduction of procedure time, surgical dexterity, no experience of fatigue and improved healthcare outcomes. In recent years, neurosurgical robots have been developed to perform various procedures. Public demand is informing the direction of neurosurgery and placing greater pressure on neurosurgeons to use neurosurgical robots. The increasing diversity and sophistication of neurosurgical robots have received ethical (...)
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  37.  7
    Development of a robotic plasma spraying system for biocompatible coatings.Karymsakova I. B., Denissova N. F. & Krak U. V. - 2019 - Artificial Intelligence Scientific Journal 24 (1-2):87-93.
    The results of the development of the database of implants and plasma deposition plants in MS SQL Server 2012 are presented. The design of the infological model, the data design, the physical design, the architecture of the software and hardware complex are given. Possibilities of plasma spraying of implants with biocompatible elements are investigated. The system of classification of implants according to the type of application and manufacturing materials has been developed, implants have been classified according to the geometric-topological dimensions (...)
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  38. Care robots and the future of ICT-mediated elderly care: a response to doom scenarios.Mark Coeckelbergh - 2016 - AI and Society 31 (4):455-462.
    The discussion about robots in elderly care is populated by doom scenarios about a totally dehumanized care system in which elderly people are taken care of by machines. Such scenarios are helpful as they attend us to what we think is important with regard to the quality elderly care. However, this article argues that they are misleading in so far as they (1) assume that deception in care is always morally unacceptable, (2) suggest that robots and other information technologies necessarily (...)
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  39. Robots Working with Humans or Humans Working with Robots? Searching for Social Dimensions in New Human-Robot Interaction in Industry.António Moniz & Bettina-Johanna Krings - 2016 - Societies 2016 (23).
    The focus of the following article is on the use of new robotic systems in the manufacturing industry with respect to the social dimension. Since “intuitive” human–machine interaction (HMI) in robotic systems becomes a significant objective of technical progress, new models of work organization are needed. This hypothesis will be investigated through the following two aims: The first aim is to identify relevant research questions related to the potential use of robotic systems in different (...)
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  40. Integrating robot ethics and machine morality: the study and design of moral competence in robots.Bertram F. Malle - 2016 - Ethics and Information Technology 18 (4):243-256.
    Robot ethics encompasses ethical questions about how humans should design, deploy, and treat robots; machine morality encompasses questions about what moral capacities a robot should have and how these capacities could be computationally implemented. Publications on both of these topics have doubled twice in the past 10 years but have often remained separate from one another. In an attempt to better integrate the two, I offer a framework for what a morally competent robot would look like and discuss a number (...)
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  41.  37
    Robots, AI, and Assisted Dying: Ethical and Philosophical Considerations.Ryan Tonkens - 2015 - In Michael Cholbi & Jukka Varelius (eds.), New Directions in the Ethics of Assisted Suicide and Euthanasia. Cham: Springer Verlag. pp. 279-298.
    The focus of this chapter is on some of the ethical and philosophical issues at the intersection of robotics and artificial intelligence (AI) applications in the health care sector and medical assistance in dying (e.g. physician-assisted suicide and euthanasia), including: (1) Is there a role for robotic systems/AI to play in the orchestration or delivery of assisted dying?; (2) Can the use of robotic systems/AI make the orchestration of assisted dying more ethical?; and (3) What insights (...)
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  42. Military Robots and the Question of Responsibility.Lamber Royakkers & Peter Olsthoorn - 2014 - International Journal of Technoethics 5 (1):01-14.
    Most unmanned systems used in operations today are unarmed and mainly used for reconnaissance and mine clearing, yet the increase of the number of armed military robots is undeniable. The use of these robots raises some serious ethical questions. For instance: who can be held morally responsible in reason when a military robot is involved in an act of violence that would normally be described as a war crime? In this article, we critically assess the attribution of responsibility with (...)
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  43.  50
    Service robotics: do you know your new companion? Framing an interdisciplinary technology assessment.Indra Spiecker Genannt Döhmann, Ingrid Ott, Mathias Gutmann, Martin Fischer, Thomas Dreier, Rüdiger Dillmann & Michael Decker - 2011 - Poiesis and Praxis 8 (1):25-44.
    Service-Robotic—mainly defined as “non-industrial robotics”—is identified as the next economical success story to be expected after robots have been ubiquitously implemented into industrial production lines. Under the heading of service-robotic, we found a widespread area of applications reaching from robotics in agriculture and in the public transportation system to service robots applied in private homes. We propose for our interdisciplinary perspective of technology assessment to take the human user/worker as common focus. In some cases, the user/worker is the (...)
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  44. Robots, jobs, taxes, and responsibilities.Luciano Floridi - 2017 - Philosophy and Technology 30 (1):1-4.
    Robots—in the form of apps, webbots, algorithms, house appliances, personal assistants, smart watches, and other systems—proliferate in the digital world, and increasingly perform a number of tasks more speedily and efficiently than humans can. This paper explores how in the future robots can be regulated when working alongside humans, focusing on issues such as robot taxation and legal liability.
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  45. Moral Machines: Teaching Robots Right From Wrong.Wendell Wallach & Colin Allen - 2008 - New York, US: Oxford University Press.
    Computers are already approving financial transactions, controlling electrical supplies, and driving trains. Soon, service robots will be taking care of the elderly in their homes, and military robots will have their own targeting and firing protocols. Colin Allen and Wendell Wallach argue that as robots take on more and more responsibility, they must be programmed with moral decision-making abilities, for our own safety. Taking a fast paced tour through the latest thinking about philosophical ethics and artificial intelligence, the authors argue (...)
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  46.  72
    Service robots in the mirror of reflective research.Michael Decker - 2012 - Poiesis and Praxis 9 (3-4):181-200.
    Service robotics has increasingly become the focus of reflective research on new technologies over the last decade. The current state of technology is characterized by prototypical robot systems developed for specific application scenarios outside factories. This has enabled context-based Science and Technology Studies and technology assessments of service robotic systems. This contribution describes the status quo of this reflective research as the starting point for interdisciplinary technology assessment (TA), taking account of TA studies and, in particular, of (...)
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  47. Robotics in place and the places of robotics: productive tensions across human geography and human–robot interaction.Casey R. Lynch, Bethany N. Manalo & Àlex Muñoz-Viso - forthcoming - AI and Society:1-14.
    Bringing human–robot interaction (HRI) into conversation with scholarship from human geography, this paper considers how socially interactive robots become important agents in the production of social space and explores the utility of core geographic concepts of _scale_ and _place_ to critically examine evolving robotic spatialities. The paper grounds this discussion through reflections on a collaborative, interdisciplinary research project studying the development and deployment of interactive museum tour-guiding robots on a North American university campus. The project is a collaboration among (...)
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  48.  52
    Can robots make good models of biological behaviour?Barbara Webb - 2001 - Behavioral and Brain Sciences 24 (6):1033-1050.
    How should biological behaviour be modelled? A relatively new approach is to investigate problems in neuroethology by building physical robot models of biological sensorimotor systems. The explication and justification of this approach are here placed within a framework for describing and comparing models in the behavioural and biological sciences. First, simulation models – the representation of a hypothesis about a target system – are distinguished from several other relationships also termed “modelling” in discussions of scientific explanation. Seven dimensions on (...)
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  49.  88
    Robot Lies in Health Care: When Is Deception Morally Permissible?Andreas Matthias - 2015 - Kennedy Institute of Ethics Journal 25 (2):169-162.
    Autonomous robots are increasingly interacting with users who have limited knowledge of robotics and are likely to have an erroneous mental model of the robot’s workings, capabilities, and internal structure. The robot’s real capabilities may diverge from this mental model to the extent that one might accuse the robot’s manufacturer of deceiving the user, especially in cases where the user naturally tends to ascribe exaggerated capabilities to the machine (e.g. conversational systems in elder-care contexts, or toy robots in child (...)
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  50.  20
    A planning system for robot construction tasks.Scott Elliott Fahlman - 1974 - Artificial Intelligence 5 (1):1-49.
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