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Active fault-diagnosis method using adaptive allocator and fault-tolerant adaptive control system design

机译:具有自适应分配器和容错自适应控制系统设计的主动故障诊断方法

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A new approach to the active fault diagnosis (AFD) for input redundant plants is presented in this paper. A test signal which helps the diagnosis is injected to the plant in addition to nominal control input in the AFD typically. One feature of the proposed AFD is adaptive allocation of the test signal. The adaptive allocator which distributes the test signal and injects it to the redundant actuators is introduced in this paper. A fault-diagnosis (FD) system that estimates fault location and its magnitude from adaptive parameter of the adaptive allocator is constructed with a simple neural network (NN) model. Furthermore, a A fault-tolerant adaptive control system which includes the adaptive test signal allocator is designed based on the model reference adaptive control (MRAC) technique. The adaptive laws of the adaptive allocator and controller are derived by using a suitable Lyapunov function. By performing experiments using a two-input redundant plant, we show the effectiveness and applicability of the proposed AFD and MRAC system.
机译:本文提出了一种对输入冗余工厂的有源故障诊断(AFD)的新方法。除了AFD中的标称控制输入之外,有助于诊断的测试信号通常是通常的。建议的AFD的一个特征是试验信号的自适应分配。本文介绍了将测试信号分配给冗余执行器的自适应分配器。使用简单的神经网络(NN)模型构建了估计自适应分配器的自适应参数的故障诊断(FD)系统及其从自适应分配器的自适应参数构建。此外,基于模型参考自适应控制(MRAC)技术设计了包括自适应测试信号分配器的容错自适应控制系统。通过使用合适的Lyapunov函数导出自适应分配器和控制器的自适应规律。通过使用双输入冗余工厂进行实验,我们展示了所提出的AFD和MRAC系统的有效性和适用性。

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