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An assist-as-needed control scheme for robot-assisted rehabilitation

Hamed Jabbari Asl, Tatsuo Narikiyo, Michihiro Kawanishi

发表年份
2017
引用次数
39

摘要

This paper addresses the assist-as-needed (AAN) control problem for robotic orthoses. The objective is to design a stable AAN controller with an adjustable assistance level. The controller aims to follow a desired trajectory while allowing an adjustable tracking error with low control effort to provide a freedom zone for the user. By ensuring the stability of the system and providing the freedom zone, the controller combines the advantages of both model-based and non-model-based AAN controllers existing in the literature. Furthermore, the controller provides a priori bounded control command, and includes an adaptive neural network term to compensate for the uncertainties of dynamic model of the system, mainly when a precise tracking is of interest. The stability of the closed-loop system is well analysed based on the Lyapunov method. The effectiveness of the proposed control scheme is validated through experiments using a lower extremity robotic exoskeleton.

关键词

Control theory (sociology)Controller (irrigation)Computer scienceTrajectoryControl engineeringScheme (mathematics)Lyapunov stabilityA priori and a posterioriStability (learning theory)Exoskeleton

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