Impedance learning adaptive super-twisting control of a robotic exoskeleton for physical human-robot interaction  被引量:1

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作  者:Brahim Brahmi Mohammad Habibur Rahman Maarouf Saad 

机构地区:[1]Department of Electrical Engineering,College Ahuntsic,Montreal,Quebec,Canada [2]Department of Mechanical Engineering,University of Wisconsin-Milwaukee,Milwaukee,WI,USA [3]Department of Electrical Engineering,École de Technologie Supérieure,Montreal,Quebec,Canada

出  处:《IET Cyber-Systems and Robotics》2023年第1期108-121,共14页智能系统与机器人(英文)

摘  要:This study addresses two issues about the interaction of the upper limb rehabilitation robot with individuals who have disabilities.The first step is to estimate the human's target position(also known as TPH).The second step is to develop a robust adaptive impedance control mechanism.A novel Non-singular Terminal Sliding Mode Control combined with an adaptive super-twisting controller is being developed to achieve this goal.This combination's purpose is to provide high reliability,continuous performance tracking of the system's trajectories.The proposed adaptive control strategy reduces matched dynamic uncertainty while also lowering chattering,which is the sliding mode's most glaring issue.The proposed TPH is coupled with adaptive impedance control with the use of a Radial Basis Function Neural Network,which allows a robotic exoskeleton to simply track the desired impedance model.To validate the approach in real-time,an exoskeleton robot was deployed in controlled experimental circumstances.A comparison study has been set up to show how the adaptive impedance approach proposed is better than other traditional controllers.

关 键 词:adaptive control impedance model robust control super twisting controller upper limb rehabilitation robot 

分 类 号:TP242[自动化与计算机技术—检测技术与自动化装置]

 

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