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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Robust Adaptive Switching Fault-Tolerant Control of a Class of Uncertain Systems against Actuator Faults
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Robust Adaptive Switching Fault-Tolerant Control of a Class of Uncertain Systems against Actuator Faults

机译:一类不确定的执行器故障系统的鲁棒自适应切换容错控制

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This paper deals with the fault-tolerant control (FTC) problem for a class of linear time-invariant systems with time-varying actuator faults and uncertainties. For more general consideration, the faults and uncertainties are supposed to depend on the states of systems and unknown constant bounds. For the sake of eliminating the effects of such state-dependent faults and uncertainties automatically, a switching control strategy which is formulated by a sign function is designed to configure controller based on system’s states. And some adjustable control parameters are updated via designing adaptive laws. Based on the information from switching function and the adaptive estimation mechanism,the robust adaptive controllers are constructed to compensate for the effects of faults and uncertainties. Through Lyapunov functions and adaptive schemes, the asymptotic stability of the resulting adaptive FTC uncertain system can be achieved. The effectiveness of the proposed design is illustrated via a rocket fairing structural-acoustic model.
机译:针对一类具有时变执行器故障和不确定性的线性时不变系统,研究了容错控制(FTC)问题。为了更笼统地考虑,故障和不确定性应该取决于系统的状态和未知的常数范围。为了自动消除此类与状态有关的故障和不确定性的影响,设计了一种由符号功能制定的开关控制策略,以便根据系统状态配置控制器。并且通过设计自适应定律来更新一些可调控制参数。基于切换功能和自适应估计机制的信息,构造了鲁棒的自适应控制器来补偿故障和不确定性的影响。通过Lyapunov函数和自适应方案,可以实现所得自适应FTC不确定系统的渐近稳定性。通过火箭整流罩结构声学模型说明了所提出设计的有效性。

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