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首页> 外文期刊>International Journal of Modelling, Identification and Control >Fault tolerant control for a class of nonlinear non-Gaussian singular stochastic distribution systems
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Fault tolerant control for a class of nonlinear non-Gaussian singular stochastic distribution systems

机译:一类非线性非高斯奇异随机分布系统的容错控制

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摘要

New fault diagnosis and active fault tolerant control (FTC) algorithms are proposed for a class of nonlinear singular stochastic distribution control (SDC) systems in this paper. Different from general SDC systems, in singular SDC systems, the relationship between the weights and the control input is expressed by a singular state space model, which increases the difficulty in design of fault diagnosis and fault tolerant control. A non-singular state transformation is made to transform the singular dynamic system into a differential-algebraic system. An adaptive nonlinear observer is designed to estimate the size of the fault occurring in the system. Furthermore, the linear matrix inequality (LMI) approach is applied to establish sufficient conditions for the existence of the observer. Based on the estimated fault information, the active fault tolerant controller is designed to make the post-fault probability density function (PDF) still track the given distribution. At last, an illustrated example is given to demonstrate the effectiveness of the proposed algorithm, and satisfactory results have been obtained.
机译:针对一类非线性奇异随机分布控制(SDC)系统,提出了一种新的故障诊断和主动容错控制(FTC)算法。与一般的SDC系统不同,在奇异的SDC系统中,权重和控制输入之间的关系由奇异的状态空间模型表示,这增加了故障诊断和容错控制设计的难度。进行非奇异状态转换以将奇异动力系统转换为微分代数系统。自适应非线性观测器旨在估计系统中发生的故障的大小。此外,线性矩阵不等式(LMI)方法适用于为观察者的存在建立足够的条件。基于估计的故障信息,主动容错控制器设计为使故障后概率密度函数(PDF)仍然跟踪给定的分布。最后,给出一个实例说明该算法的有效性,取得了满意的结果。

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