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Switching fault-tolerant control for a class of nonlinear systems with actuator faults

Hongjun Ma, Guang‐Hong Yang, Dan Ye

Year
2013
Citations
5

Abstract

This paper presents a fault-tolerant control (FTC) strategy for a class of uncertain nonlinear systems with actuator faults. The faults acting on the actuator are described by a unified model of bias, loss-of-effectiveness, stuck and hard-over faults. By constructing a logic-based switching rule, the actuator faults can be automatically accommodated by switching from the stuck actuator to a healthy one (or even a partly-losing-effectiveness one with bias), even in the presence of large parametric uncertainty. A simulation example of single-link flexible-joint robot is given to show the effectiveness of the proposed FTC controller.

Keywords

ActuatorControl theory (sociology)Parametric statisticsNonlinear systemComputer scienceFault toleranceController (irrigation)Fault (geology)RobotControl (management)

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