Fractional order robust adaptive control design for actuator failure compensation in dual ball-beam system

Hamza Benchaita, S. Ladaci
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Abstract

This paper is to proposes a fractional order adaptive control scheme design for actuator failure compensation in order to balance of a ball-beam system with redundant actuators. The proposed controller is based on a fractional order sliding surface from which an adaptive actuator failure compensation control scheme is obtained. In order to control the dual ball-beam system with redundant motors, a linearized model is derived, which is subjected to actuator failures. A set of numerical simulation tests representing few selected types of actuator failures scenarios are carried out to assess the output tracking performance of the proposed controller design when dealing with such failures
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双球梁系统致动器故障补偿的分数阶鲁棒自适应控制设计
针对具有冗余作动器的球梁系统的平衡问题,提出了一种分数阶作动器故障补偿的自适应控制方案。该控制器基于分数阶滑动曲面,并由此获得了自适应执行器故障补偿控制方案。为了控制冗余电机双球梁系统,推导了考虑执行器失效的线性化模型。为了评估所提出的控制器设计在处理此类故障时的输出跟踪性能,进行了一组代表少数选定类型的执行器故障场景的数值模拟试验
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