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Adaptive output feedback force tracking control for Lower Extremity Power-assisted Exoskeleton

Authors
  • Shengli Song

    Army Engineering University of PLA, Nanjing, 210007, China.

  • Yuxuan Cao

    Army Engineering University of PLA, Nanjing, 210007, China.

  • Haitao Wang

    Army Engineering University of PLA, Nanjing, 210007, China.

  • Jinhong Xue

    Army Engineering University of PLA, Nanjing, 210007, China.

  • XINGLONG ZHANG

    Army Engineering University of PLA, Nanjing, 210007, China.

  • Junyong Fu

    Shanghai Key Laboratory of Space Intelligent Control Technology Shanghai, 201108, China.

  • Fangwen Tu

    National University of Singapore, 117576, Singapore.

Abstract

This paper presents an output feedback adaptive force tracking control scheme for Lower Extremity Power-assisted Exoskeleton (LEPEX). LEPEX is driven by electro-hydraulic actuators geometrically mounted for the active joints, which exhibits high nonlinear dynamics. In view of this, a robust observer resorting to Radius Basis Function Neural Network (RBF-NN) is proposed to approximate the nonlinearities so as to detect the values of the process variables.  An adaptive controller compatible with the RBF-NN estimator is adopted to cope with the nonlinearities and possible model uncertainties. The convergence of the output, i.e., load force variable, to a computable set is guaranteed in the context of Lyapunov direct method. Finally, simulation and experimental tests on the force control of an ankle joint of LEPEX are studied to witness the potentiality of the proposed approach.

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Published
2018-09-20
Section
Articles