Results for ' autonomous robots'

986 found
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  1.  86
    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 ask (...)
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  2. The morality of autonomous robots.Aaron M. Johnson & Sidney Axinn - 2013 - Journal of Military Ethics 12 (2):129 - 141.
    While there are many issues to be raised in using lethal autonomous robotic weapons (beyond those of remotely operated drones), we argue that the most important question is: should the decision to take a human life be relinquished to a machine? This question is often overlooked in favor of technical questions of sensor capability, operational questions of chain of command, or legal questions of sovereign borders. We further argue that the answer must be ?no? and offer several reasons for (...)
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  3.  12
    Autonomous robots and tacit knowledge.Mihály Héder & Daniel Paksi - 2012 - Appraisal 9 (2).
  4. Reasons to Punish Autonomous Robots.Zac Cogley - 2023 - The Gradient 14.
    I here consider the reasonableness of punishing future autonomous military robots. I argue that it is an engineering desideratum that these devices be responsive to moral considerations as well as human criticism and blame. Additionally, I argue that someday it will be possible to build such machines. I use these claims to respond to the no subject of punishment objection to deploying autonomous military robots, the worry being that an “accountability gap” could result if the robot (...)
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  5.  9
    Accountability as a service for robotics: Performance assessment of different accountability strategies for autonomous robots.Laura Fernández-Becerra, Ángel Manuel Guerrero-Higueras, Francisco Javier Rodríguez-Lera & Vicente Matellán - 2024 - Logic Journal of the IGPL 32 (2):243-262.
    An essential requirement for increasing human confidence in computer systems is knowing an event’s origin. Therefore, it is necessary to have an efficient method to record such information. It is especially challenging in robotics, where unexpected behaviours can have unpredictable consequences, endangering the interests of people or even their safety. Furthermore, to analyse an incident’s cause or anticipate future behaviours, we must identify the events that cause a specific action. Although it is common to use logging systems for such purposes, (...)
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  6.  85
    Responsibility, liability, and lethal autonomous robots.Heather M. Roff - 2013 - In Fritz Allhoff, Nicholas Evans & Adam Henschke (eds.), Routledge Handbook of Ethics and War: Just War Theory in the 21st Century. Routledge. pp. 352.
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  7.  5
    Explorative Experiments in Autonomous Robotics.Viola Schiaffonati & Francesco Amigoni - 2006 - In Lorenzo Magnani & Claudia Casadio (eds.), Model Based Reasoning in Science and Technology. Logical, Epistemological, and Cognitive Issues. Springer Verlag.
    The debate on the experimental method, its role, its limits, and its possible applications has recently gained attention in autonomous robotics. If, from the one hand, classical experimental principles, such as repeatability and reproducibility, play as an inspiration for the development of good experimental practices in this research area, from the other hand, some recent analyses have evidenced that rigorous experimental approaches are not yet full part of the research habits in this community. In this paper, in order to (...)
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  8.  15
    Deliberation for autonomous robots: A survey.Félix Ingrand & Malik Ghallab - 2017 - Artificial Intelligence 247 (C):10-44.
  9. Autonomous and Semi-Autonomous Robots in War.Leonard Kahn - 2017 - In Robot Ethics 2. 0: New Challenges in Philosophy, Law, and Society. Oxford, UK: Oxford University Press. pp. 274-292.
  10.  17
    Path Planning for Autonomous Robots Using Neural Networks.Ashraf A. Kassim & B. V. K. Vijaya Kumar - 1997 - Journal of Intelligent Systems 7 (1-2):33-56.
  11. Genes, Affect, and Reason: Why Autonomous Robot Intelligence Will Be Nothing Like Human Intelligence.Henry Moss - 2016 - Techné: Research in Philosophy and Technology 20 (1):1-15.
    Abstract: Many believe that, in addition to cognitive capacities, autonomous robots need something similar to affect. As in humans, affect, including specific emotions, would filter robot experience based on a set of goals, values, and interests. This narrows behavioral options and avoids combinatorial explosion or regress problems that challenge purely cognitive assessments in a continuously changing experiential field. Adding human-like affect to robots is not straightforward, however. Affect in organisms is an aspect of evolved biological systems, from (...)
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  12.  24
    Explorative Experiments: A Paradigm Shift to Deal with Severe Uncertainty in Autonomous Robotics.Viola Schiaffonati - 2022 - Perspectives on Science 30 (2):284-304.
    This paper presents a case of severe uncertainty in the development of autonomous and intelligent systems in Artificial Intelligence and autonomous robotics. After discussing how uncertainty emerges from the complexity of the systems and their interaction with unknown environments, the paper describes the novel framework of explorative experiments. This framework presents a suitable context in which many of the issues relative to uncertainty, both at the epistemological level and at the ethical one, in this field should be reframed. (...)
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  13. A Comparative Defense of Self-initiated Prospective Moral Answerability for Autonomous Robot harm.Marc Champagne & Ryan Tonkens - 2023 - Science and Engineering Ethics 29 (4):1-26.
    As artificial intelligence becomes more sophisticated and robots approach autonomous decision-making, debates about how to assign moral responsibility have gained importance, urgency, and sophistication. Answering Stenseke’s (2022a) call for scaffolds that can help us classify views and commitments, we think the current debate space can be represented hierarchically, as answers to key questions. We use the resulting taxonomy of five stances to differentiate—and defend—what is known as the “blank check” proposal. According to this proposal, a person activating a (...)
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  14.  20
    The Role of Decision Authority and Stated Social Intent as Predictors of Trust in Autonomous Robots.Joseph B. Lyons, Sarah A. Jessup & Thy Q. Vo - forthcoming - Topics in Cognitive Science.
    Prior research has demonstrated that trust in robots and performance of robots are two important factors that influence human–autonomy teaming. However, other factors may influence users’ perceptions and use of autonomous systems, such as perceived intent of robots and decision authority of the robots. The current study experimentally examined participants’ trust in an autonomous security robot (ASR), perceived trustworthiness of the ASR, and desire to use an ASR that varied in levels of decision authority (...)
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  15.  15
    The Role of Decision Authority and Stated Social Intent as Predictors of Trust in Autonomous Robots.Joseph B. Lyons, Sarah A. Jessup & Thy Q. Vo - forthcoming - Topics in Cognitive Science.
    Prior research has demonstrated that trust in robots and performance of robots are two important factors that influence human–autonomy teaming. However, other factors may influence users’ perceptions and use of autonomous systems, such as perceived intent of robots and decision authority of the robots. The current study experimentally examined participants’ trust in an autonomous security robot (ASR), perceived trustworthiness of the ASR, and desire to use an ASR that varied in levels of decision authority (...)
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  16. 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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  17.  65
    The role of learning in autonomous robots.Rodney A. Brooks - unknown
    Applications of learning to autonomous agents (simulated or real) have often been restricted to learning a mapping from perceived state of the world to the next action to take. Often this is couched in terms of learning from no previous knowledge. This general case for real autonomous robots is very difficult. In any case, when building a real robot there is usually a lot of a priori knowledge (e.g., from the engineering that went into its design) which (...)
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  18.  75
    Just say “no!” to lethal autonomous robotic weapons.William M. Fleischman - 2015 - Journal of Information, Communication and Ethics in Society 13 (3/4):299-313.
    Purpose – The purpose of this paper is to consider the question of equipping fully autonomous robotic weapons with the capacity to kill. Current ideas concerning the feasibility and advisability of developing and deploying such weapons, including the proposal that they be equipped with a so-called “ethical governor”, are reviewed and critiqued. The perspective adopted for this study includes software engineering practice as well as ethical and legal aspects of the use of lethal autonomous robotic weapons. Design/methodology/approach – (...)
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  19.  46
    Trusting Robocop: Gender-Based Effects on Trust of an Autonomous Robot.Darci Gallimore, Joseph B. Lyons, Thy Vo, Sean Mahoney & Kevin T. Wynne - 2019 - Frontiers in Psychology 10.
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  20.  43
    Special issue on: Going beyond the laboratory—reconsidering the ELS implications of autonomous robots.Gesa Lindemann, Hironori Matsuzaki & Ilona Straub - 2016 - AI and Society 31 (4):441-444.
  21. Artificial consciousness, artificial emotions, and autonomous robots.Alain Cardon - 2006 - Cognitive Processing 7 (4):245-267.
  22.  15
    Online perceptual learning and natural language acquisition for autonomous robots.Muhannad Alomari, Fangjun Li, David C. Hogg & Anthony G. Cohn - 2022 - Artificial Intelligence 303 (C):103637.
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  23. Heyns's 2013 argument in the Guardian that lethal autonomous robots should be banned.Michael H. G. Hoffmann - forthcoming - .
     
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  24. Heyns's 2013 argument that all states should declare moratoria on lethal autonomous robots.Michael H. G. Hoffmann - forthcoming - .
    This argument map represents an argumentation from Heyns, C. . Report of the Special Rapporteur on extrajudicial, summary or arbitrary executions, Christof Heyns . S.l.: United Nations. Human Rights Council. The argument map is open for debate in AGORA-net, search for map ID 9206.
     
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  25. 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 (...)
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  26. Autonomous killer robots are probably good news.Vincent C. Müller - 2016 - In Ezio Di Nucci & Filippo Santonio de Sio (eds.), Drones and responsibility: Legal, philosophical and socio-technical perspectives on the use of remotely controlled weapons. London: Ashgate. pp. 67-81.
    Will future lethal autonomous weapon systems (LAWS), or ‘killer robots’, be a threat to humanity? The European Parliament has called for a moratorium or ban of LAWS; the ‘Contracting Parties to the Geneva Convention at the United Nations’ are presently discussing such a ban, which is supported by the great majority of writers and campaigners on the issue. However, the main arguments in favour of a ban are unsound. LAWS do not support extrajudicial killings, they do not take (...)
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  27. 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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  28.  27
    Robot Ethics 2.0: From Autonomous Cars to Artificial Intelligence.Patrick Lin, Keith Abney & Ryan Jenkins (eds.) - 2017 - Oxford University Press.
    As robots slip into more domains of human life - from the operating room to the bedroom - they take on our morally important tasks and decisions, as well as create new risks from psychological to physical. This book answers the urgent call to study their ethical, legal, and policy impacts.
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  29. 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 (...)
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  30.  92
    Lethal Autonomous Weapons: Re-Examining the Law and Ethics of Robotic Warfare.Jai Galliott, Duncan MacIntosh & Jens David Ohlin (eds.) - 2021 - New York: Oxford University Press.
    The question of whether new rules or regulations are required to govern, restrict, or even prohibit the use of autonomous weapon systems has been the subject of debate for the better part of a decade. Despite the claims of advocacy groups, the way ahead remains unclear since the international community has yet to agree on a specific definition of Lethal Autonomous Weapon Systems and the great powers have largely refused to support an effective ban. In this vacuum, the (...)
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  31. The Strategic Robot Problem: Lethal Autonomous Weapons in War.Heather M. Roff - 2014 - Journal of Military Ethics 13 (3):211-227.
    The present debate over the creation and potential deployment of lethal autonomous weapons, or ‘killer robots’, is garnering more and more attention. Much of the argument revolves around whether such machines would be able to uphold the principle of noncombatant immunity. However, much of the present debate fails to take into consideration the practical realties of contemporary armed conflict, particularly generating military objectives and the adherence to a targeting process. This paper argues that we must look to the (...)
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  32.  23
    Autonomous social robots are real in the mind's eye of many.Nathan Caruana & Emily S. Cross - 2023 - Behavioral and Brain Sciences 46:e26.
    Clark and Fischer's dismissal of extant human–robot interaction research approaches limits opportunities to understand major variables shaping people's engagement with social robots. Instead, this endeavour categorically requires multidisciplinary approaches. We refute the assumption that people cannot (correctly or incorrectly) represent robots as autonomous social agents. This contradicts available empirical evidence, and will become increasingly tenuous as robot automation improves.
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  33.  41
    Autonomous development and learning in artificial intelligence and robotics: Scaling up deep learning to human-like learning.Pierre-Yves Oudeyer - 2017 - Behavioral and Brain Sciences 40.
    Autonomous lifelong development and learning are fundamental capabilities of humans, differentiating them from current deep learning systems. However, other branches of artificial intelligence have designed crucial ingredients towards autonomous learning: curiosity and intrinsic motivation, social learning and natural interaction with peers, and embodiment. These mechanisms guide exploration and autonomous choice of goals, and integrating them with deep learning opens stimulating perspectives.
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  34. Robots, Dennett and the autonomous: A terminological investigation. [REVIEW]C. T. A. Schmidt & Felicitas Kraemer - 2006 - Minds and Machines 16 (1):73-80.
    In the present enterprise we take a look at the meaning of Autonomy, how the word has been employed and some of the consequences of its use in the sciences of the artificial. Could and should robots really be autonomous entities? Over and beyond this, we use concepts from the philosophy of mind to spur on enquiry into the very essence of human autonomy. We believe our initiative, as does Dennett's life-long research, sheds light upon the problems of (...)
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  35.  5
    Robot shaping: developing autonomous agents through learning.Marco Dorigo & Marco Colombetti - 1994 - Artificial Intelligence 71 (2):321-370.
  36. Embodied Cognition for Autonomous Interactive Robots.Guy Hoffman - 2012 - Topics in Cognitive Science 4 (4):759-772.
    In the past, notions of embodiment have been applied to robotics mainly in the realm of very simple robots, and supporting low-level mechanisms such as dynamics and navigation. In contrast, most human-like, interactive, and socially adept robotic systems turn away from embodiment and use amodal, symbolic, and modular approaches to cognition and interaction. At the same time, recent research in Embodied Cognition (EC) is spanning an increasing number of complex cognitive processes, including language, nonverbal communication, learning, and social behavior.This (...)
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  37. 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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  38.  17
    Can a robot be an expert? The social meaning of skill and its expression through the prospect of autonomous AgTech.Katharine Legun, Karly Ann Burch & Laurens Klerkx - 2022 - Agriculture and Human Values 40 (2):501-517.
    Artificial intelligence and robotics have increasingly been adopted in agri-food systems—from milking robots to self-driving tractors. New projects extend these technologies in an effort to automate skilled work that has previously been considered dependent on human expertise due to its complexity. In this paper, we draw on qualitative research carried out with farm managers on apple orchards and winegrape vineyards in Aotearoa New Zealand. We investigate how agricultural managers’ perceptions of future agricultural automation relates to their approach to expertise, (...)
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  39.  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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  40. Autonomous Entertainment Robot and Speech Dialogue.Hideki Shimomura, Kazumi Aoyama & Masahiro Fujita - forthcoming - The Japanese Society for Ai, Sig-Sluda202.
  41.  25
    Legal framework for small autonomous agricultural robots.Subhajit Basu, Adekemi Omotubora, Matt Beeson & Charles Fox - 2020 - AI and Society 35 (1):113-134.
    Legal structures may form barriers to, or enablers of, adoption of precision agriculture management with small autonomous agricultural robots. This article develops a conceptual regulatory framework for small autonomous agricultural robots, from a practical, self-contained engineering guide perspective, sufficient to get working research and commercial agricultural roboticists quickly and easily up and running within the law. The article examines the liability framework, or rather lack of it, for agricultural robotics in EU, and their transpositions to UK (...)
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  42.  10
    Consumer acceptance of autonomous delivery robots for last-mile delivery: Technological and health perspectives.Kum Fai Yuen, Lanhui Cai, Yong Guang Lim & Xueqin Wang - 2022 - Frontiers in Psychology 13.
    The unprecedented outbreak of the novel coronavirus has led to a great shift toward online retailing and accelerated the need for contactless delivery. This study investigates how technological and health belief factors influence consumer acceptance of autonomous delivery robots. Anchored in four behavioral theories [i.e., technology acceptance model, health belief model, perceived value theory and trust theory], a synthesized model is developed. A total of 500 valid responses were collected through an online questionnaire in Singapore, and structural equation (...)
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  43.  34
    Robot Ethics 2.0. From Autonomous Cars to Artificial Intelligence—Edited by Patrick Lin, Keith Abney, Ryan Jenkins. New York: Oxford University Press, 2017. Pp xiii + 421. [REVIEW]Agnė Alijauskaitė - 2022 - Erkenntnis 87 (6):3007-3010.
  44. Ethical issues for robotics and autonomous systems.John McDermid, Vincent C. Müller, Tony Pipe, Zoe Porter & Alan Winfield - 2019 - UK Robotics and Autonomous Systems Network.
    There are unusual challenges in ethics for RAS. Perhaps the issue can best be summarised as needing to consider “technically informed ethics”. The technology of RAS raises issues that have an ethical dimension, and perhaps uniquely so due to the possibility of moving human decision-making which is implicitly ethically informed to computer systems. Further, if seeking solutions to these problems – ethically aligned design, to use the IEEE’s terminology – then the solutions must be technically meaningful, capable of realisation, capable (...)
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  45.  90
    Framing robot arms control.Wendell Wallach & Colin Allen - 2013 - Ethics and Information Technology 15 (2):125-135.
    The development of autonomous, robotic weaponry is progressing rapidly. Many observers agree that banning the initiation of lethal activity by autonomous weapons is a worthy goal. Some disagree with this goal, on the grounds that robots may equal and exceed the ethical conduct of human soldiers on the battlefield. Those who seek arms-control agreements limiting the use of military robots face practical difficulties. One such difficulty concerns defining the notion of an autonomous action by a (...)
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  46.  97
    Who Is Responsible for Killer Robots? Autonomous Weapons, Group Agency, and the Military‐Industrial Complex.Isaac Taylor - 2021 - Journal of Applied Philosophy 38 (2):320-334.
    There has recently been increasing interest in the possibility and ethics of lethal autonomous weapons systems (LAWS), which would combine sophisticated AI with machinery capable of deadly force. One objection to LAWS is that their use will create a troubling responsibility gap, where no human agent can properly be held accountable for the outcomes that they create. While some authors have attempted to show that individual agents can, in fact, be responsible for the behaviour of LAWS in various circumstances, (...)
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  47.  78
    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 (...)
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  48.  11
    Neural architecture search for the estimation of relative positioning of the autonomous mobile robot.Daniel Teso-Fz-Betoño, Ekaitz Zulueta, Ander Sanchez-Chica, Unai Fernandez-Gamiz, Adrian Teso-Fz-Betoño & Jose Manuel Lopez-Guede - 2023 - Logic Journal of the IGPL 31 (4):634-647.
    In the present work, an artificial neural network (ANN) will be developed to estimate the relative rotation and translation of the autonomous mobile robot (AMR). The ANN will work as an iterative closed point, which is commonly used with the singular value decomposition algorithm. This development will provide better resolution for a relative positioning technique that is essential for the AMR localization. The ANN requires a specific architecture, although in the current work a neural architecture search will be adapted (...)
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  49. Autonomous Weapons and Distributed Responsibility.Marcus Schulzke - 2013 - Philosophy and Technology 26 (2):203-219.
    The possibility that autonomous weapons will be deployed on the battlefields of the future raises the challenge of determining who can be held responsible for how these weapons act. Robert Sparrow has argued that it would be impossible to attribute responsibility for autonomous robots' actions to their creators, their commanders, or the robots themselves. This essay reaches a much different conclusion. It argues that the problem of determining responsibility for autonomous robots can be solved (...)
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  50. 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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