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End-Effector Trajectory Tracking Control of Space Robot with Gain Performance

Author

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  • Haibo Zhang
  • Dayi Wang
  • Chunling Wei
  • Bing Xiao

Abstract

This paper presents a novel solution to the control problem of end-effector robust trajectory tracking for space robot. External disturbance and system uncertainties are addressed. For the considered robot operating in free-floating mode, a Chebyshev neural network is introduced to estimate system uncertainties and external disturbances. An adaptive controller is then proposed. The closed-loop system is guaranteed to be ultimately uniformly bounded. The key feature of this proposed approach is that, by choosing appropriate control gains, it can achieve any given small level of gain disturbance attenuation from external disturbance to system output. The tracking performance is evaluated through a numerical example.

Suggested Citation

  • Haibo Zhang & Dayi Wang & Chunling Wei & Bing Xiao, 2015. "End-Effector Trajectory Tracking Control of Space Robot with Gain Performance," Mathematical Problems in Engineering, Hindawi, vol. 2015, pages 1-9, October.
  • Handle: RePEc:hin:jnlmpe:175342
    DOI: 10.1155/2015/175342
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