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  • Search: subject:"Physical human-robot interaction"
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Subject
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Physical human–robot interaction 3 Robotics 3 Man machine interface (MMI) 2 Artificial damping field 1 Assistive Robotics 1 Assistive robotics 1 Compliant control 1 Compliant mechanisms 1 Control 1 Cooperative robots 1 Dynamical systems 1 Force Control 1 Haptic devices 1 Human-robot collaboration 1 Industrial robot 1 JACO 1 Kernelized movement primitives (KMP) 1 Kinova 1 Lead-through programming (LTP) 1 MICO 1 Manual welding 1 Obstacle avoidance 1 Physical Human-Robot Interaction 1 Physical human-robot interaction 1 Service Robotics 1 Torque Control 1 Training for welding 1 Trajectory adaptation 1 Welding skills 1
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Article 5
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research-article 4
Language
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English 5
Author
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Bian, Feifei 1 Billard, Aude 1 Boucher, François 1 Campeau-Lecours, Alexandre 1 Chen, Xuyang 1 Deguire, Charles 1 Erden, Mustafa Suphi 1 Fauteux, Philippe 1 Guo, Yuliang 1 Han, Bing 1 Hou, Renluan 1 L'Ecuyer, Louis-Joseph Caron 1 Lamontagne, Hugo 1 Latour, Simon 1 Li, Ruifeng 1 Liang, Peidong 1 Lu, Yuankai 1 Ma, Qun 1 Maheu, Véronique 1 Niu, Jianwei 1 Ren, Danmei 1 Ren, Tao 1 Wang, Ke 1 Wu, Haibin 1 Xiao, Sa 1 Ye, Jinhua 1 Yu, Xiaolong 1 Zhao, Lijun 1
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Published in...
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Industrial Robot: the international journal of robotics research and application 3 Industrial Robot: An International Journal 1 International Journal of Robotics Applications and Technologies (IJRAT) 1
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Other ZBW resources 5
Showing 1 - 5 of 5
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A KMP-based interactive learning approach for robot trajectory adaptation with obstacle avoidance
Xiao, Sa; Chen, Xuyang; Lu, Yuankai; Ye, Jinhua; Wu, Haibin - In: Industrial Robot: the international journal of robotics … 51 (2024) 2, pp. 326-339
Purpose Imitation learning is a powerful tool for planning the trajectory of robotic end-effectors in Cartesian space. Present methods can adapt the trajectory to the obstacle; however, the solutions may not always satisfy users, whereas it is hard for a nonexpert user to teach the robot to avoid...
Persistent link: https://www.econbiz.de/10015348409
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A novel start-up method of sensorless passive lead-through programming for industrial robots
Guo, Yuliang; Niu, Jianwei; Hou, Renluan; Ren, Tao; … - In: Industrial Robot: the international journal of robotics … 50 (2022) 1, pp. 26-34
Purpose Sensorless passive lead-through programming (LTP) is a promising physical human-robot interaction technology …
Persistent link: https://www.econbiz.de/10014835425
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Dynamical system based variable admittance control for physical human-robot interaction
Bian, Feifei; Ren, Danmei; Li, Ruifeng; Liang, Peidong; … - In: Industrial Robot: the international journal of robotics … 47 (2020) 4, pp. 623-635
in a reactive fashion toward human inputs and task requirements during physical human–robot interaction. Design …
Persistent link: https://www.econbiz.de/10014836101
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Kinova Modular Robot Arms for Service Robotics Applications
Campeau-Lecours, Alexandre; Lamontagne, Hugo; Latour, Simon - In: International Journal of Robotics Applications and … 5 (2017) 2, pp. 49-71
This article presents Kinova's modular robotic systems, including the robots JACO2 and MICO2, actuators and grippers. Kinova designs and manufactures robotics platforms and components that are simple, sexy and safe under two business units: Assistive Robotics empowers people living with...
Persistent link: https://www.econbiz.de/10012047242
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Robotic training for hand movements during manual welding with real-time alarm feedback
Erden, Mustafa Suphi; Billard, Aude - In: Industrial Robot: An International Journal 42 (2015) 6, pp. 554-564
Purpose – The purpose of this study is to develop a robotic training system for the hand movements during manual welding. The system provides real-time notice-feedback with sound or light alarms, whenever the welding hand vibrates beyond the nominal level observed with professional welders....
Persistent link: https://www.econbiz.de/10014835533
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