Výsledky vyhledávání - Human-Swarm Interaction Robot swarm Visualisation Control User study Virtual Reality

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  1. 1

    User interfaces for human robot interactions with a swarm of robots in support to firefighters Autor Gancet, Jeremi, Motard, Elvina, Naghsh, Amir, Roast, Chris, Arancon, Miguel Munoz, Marques, Lino

    ISBN: 9781424450381, 1424450381
    ISSN: 1050-4729
    Vydáno: IEEE 01.05.2010
    “… This paper outlines some of the key characteristics of this emergency setting, robot swarms within it and the work conducted to develop effective human-robot interaction…”
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    Konferenční příspěvek
  2. 2

    Human - robot swarm interaction for entertainment: from animation display to gesture based control Autor Alonso-Mora, Javier, Siegwart, Roland, Beardsley, Paul

    ISBN: 1450326587, 9781450326582
    Vydáno: New York, NY, USA ACM 03.03.2014
    “…This work shows experimental results with three systems that take real-time user input to direct a robot swarm formed by tens of small robots…”
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  3. 3

    Eye Movement-Based Human-Swarm Interaction for Coverage Control of Mobile Robots With Constraints Autor Fang, Ziyi, Qin, Jiahu, Qin, Jianmin, Ma, Qichao, Han, Ruitian, Liu, Qingchen

    ISSN: 0278-0046, 1557-9948
    Vydáno: New York IEEE 01.06.2025
    “…Inspired by search and rescue tasks in hazardous environments with mixed human and robots teams, we develop a human-swarm interaction scheme for coverage control of mobile robots in a non-convex and closed 2-D area…”
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    Journal Article
  4. 4

    Sharing the Control of Robot Swarms Among Multiple Human Operators: A User Study Autor Miyauchi, Genki, Lopes, Yuri K., GroB, Roderich

    ISSN: 2153-0866
    Vydáno: IEEE 01.10.2023
    “… This paper investigates the ability of multiple operators to dynamically share the control of robot swarms and the effects of different communication types on performance and human factors…”
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  5. 5

    Compliance control based on Particle Swarm Optimization approach for physical human-robot interaction Autor Zhongliang Jiang, Yu Sun, Long Lei, Ying Hu, Chenyu Xiao, Jianwei Zhang

    Vydáno: IEEE 01.06.2016
    “… Somebody may need to cooperate with robots to complete some specific tasks. But when people work with robots, there remain some significant differences in human-human interactions and human-robot interaction…”
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  6. 6

    Biomechanics‐Based User‐Adaptive Variable Impedance Control for Enhanced Physical Human–Robot Interaction Using Bayesian Optimization Autor Zahedi, Fatemeh, Lee, Hyunglae

    ISSN: 2640-4567, 2640-4567
    Vydáno: Weinheim John Wiley & Sons, Inc 01.02.2025
    Vydáno v Advanced intelligent systems (01.02.2025)
    “…This paper presents a biomechanics‐based, user‐adaptive variable impedance controller designed to enhance the performance of coupled human…”
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    Journal Article
  7. 7

    Teaching the User By Learning From the User:Personalizing Movement Control in Physical Human-robot Interaction Autor Safavi, Ali, Zadeh, Mehrdad H.

    ISSN: 2329-9266, 2329-9274
    Vydáno: Piscataway Chinese Association of Automation (CAA) 01.01.2017
    Vydáno v IEEE/CAA journal of automatica sinica (01.01.2017)
    “…This paper proposes a novel approach for physical human-robot interactions(pHRI), where a robot provides guidance forces to a user based on the user performance…”
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    Journal Article
  8. 8

    User Force-Dependent Variable Impedance Control in Human-Robot Interaction Autor Muller, Florian, Janetzky, Jan, Behrnd, Uwe, Jakel, Jens, Thomas, Ulrike

    ISSN: 2161-8089
    Vydáno: IEEE 01.08.2018
    “…In this paper a novel type of variable impedance control (VIC) is presented. The controller adjusts the impedance depending on the force input of the user…”
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  9. 9

    A User Study on Personalized Stiffness Control and Task Specificity in Physical Human–Robot Interaction Autor Gopinathan, Sugeeth, Ötting, Sonja K., Steil, Jochen J.

    ISSN: 2296-9144, 2296-9144
    Vydáno: Frontiers Media S.A 24.11.2017
    Vydáno v Frontiers in robotics and AI (24.11.2017)
    “…An ideal physical human–robot interaction (pHRI) should offer the users robotic systems that are easy to handle, intuitive to use, ergonomic and adaptive to human habits and preferences…”
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    Journal Article
  10. 10

    Biomechanics-Based User-Adaptive Variable Impedance Control for Enhanced Physical Human-Robot Interaction Autor Zahedi, Fatemeh

    ISBN: 9798379526528
    Vydáno: ProQuest Dissertations & Theses 01.01.2023
    “… human-robot interaction through the development and implementation of various control methods…”
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    Dissertation
  11. 11

    A user study on personalized adaptive stiffness control modes for human-robot interaction Autor Gopinathan, Sugeeth, Otting, Sonja, Steil, Jochen

    ISSN: 1944-9437
    Vydáno: IEEE 01.08.2017
    Vydáno v IEEE RO-MAN (01.08.2017)
    “…This paper introduces a Personalized Adaptive Stiffness controller for physical Human-Robot Interaction and validates its performance in an extensive user study with 49 participants…”
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  12. 12

    User-Adaptive Variable Damping Control Using Bayesian Optimization to Enhance Physical Human-Robot Interaction Autor Zahedi, Fatemeh, Chang, Dongjune, Lee, Hyunglae

    ISSN: 2377-3766, 2377-3766
    Vydáno: Piscataway IEEE 01.04.2022
    Vydáno v IEEE robotics and automation letters (01.04.2022)
    “…This letter presents a user-adaptive variable damping controller that enhances the overall performance of coupled human-robot systems in terms of stability, agility, user effort, and energy…”
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    Journal Article
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    Improving Interactions between a Power-Assist Robot System and Its Human User in Horizontal Transfer of Objects Using a Novel Adaptive Control Method Autor Rahman, S. M. Mizanoor, Ikeura, Ryojun

    ISSN: 1687-5893, 1687-5907
    Vydáno: Cairo, Egypt Hindawi Puplishing Corporation 01.01.2012
    “… However, the interactions between the systems and the human users are usually not satisfactory because human features are not included in the control design…”
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    Journal Article
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    Towards Augmented Reality Support for Swarm Monitoring: Evaluating Visual Cues to Prevent Fragmentation Autor Henard, Aymeric, Peillard, Etienne, Riviere, Jeremy, Kubicki, Sebastien, Coppin, Gilles

    ISSN: 1077-2626, 1941-0506, 1941-0506
    Vydáno: United States IEEE 01.11.2025
    “… direction-to make explicit the underlying Perception-Decision-Action (PDA) loop of each robot. Through an immersive Virtual Reality user study, 51 participants…”
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    Journal Article