Adaptive Actuator Failure Compensation for Redundant Manipulators

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Keçeci, Emin Faruk

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BRONZE

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Yes

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Abstract

This paper presents an adaptive actuator failure compensation method, which compensates for uncertainties due to unknown actuator failures for redundant manipulator systems. The method is first developed for manipulators whose joints are concurrently actuated. While physical realization of concurrently actuated manipulators and the advantages of their use have been understood before, in this paper failure modeling, controller structure, and adaptive update rules for handling uncertainties from the actuator failures are studied. The adaptive actuator failure compensation method is then expanded for a cooperating multiple manipulator system with uncertain actuator failures. Dynamic equations of such a multiple manipulator system in the task space are derived and the adaptive actuator failure compensation problem is formulated in the task space, for which a compensation controller structure is proposed with stable adaptive parameter update laws. The adaptive control scheme is able to compensate for the uncertainties of system parameters and actuator failures in a more general sense. For both cases, closed-loop system stability and asymptotic tracking are proved, despite uncertain system failures.

Description

Keywords

Adaptive control systems, Actuator failure compensation, Redundant manipulator failure compensation, Uncertain systems, Physical realizations, Redundant manipulator failure compensation, Actuator failure compensation, Uncertain systems, Adaptive control systems, Physical realizations

Fields of Science

0209 industrial biotechnology, 02 engineering and technology

Citation

Keçeci, E. F., Tang, X., and Tao, G. (2009). Adaptive actuator failure compensation for redundant manipulators. Robotica, 27(1), 19-28. doi:10.1017/S0263574708004487

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10

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Volume

27

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1

Start Page

19

End Page

28
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7

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960

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456

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