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Fault Detection for a Class of Uncertain Linear Discrete-time Systems with Intermittent Measurements and Probabilistic Actuator Failures

机译:具有间歇测量和概率执行器故障的一类不确定线性离散时间系统的故障检测

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This paper deals with fault detection (FD) problem for linear discrete-time systems subject to random intermittent measurements, probabilistic actuator failures, norm-bounded model uncertainty, and stochastic model uncertainty. By taking into account the probabilistic actuator failures, a new reference residual model is proposed to formulate the FD issue as an H_∞ model-matching problem. The corresponding reference residual is generated through maximizing a stochastic H_-/H_∞ or H_∞/H_∞ performance index via solving an algebraic Riccati equation (ARE). By the aid of the linear matrix inequality (LMI) techniques, a fault detection filter (FDF) is constructed such that the residual is sensitive to fault but insensitive to unknown inputs, mixed model uncertainties, random intermittent measurements and stochastic actuator failures. An illustrative example is given to demonstrate the effectiveness of the proposed method.
机译:本文对随机间隔测量的线性离散时间系统进行了故障检测(FD)问题,概率致动器故障,常规模型不确定度和随机模型不确定性。通过考虑概率的执行器故障,提出了一种新的参考残余模型,以制定FD问题作为H_‖模型匹配问题。通过求解代数Riccati等式(是),通过最大化随机H _-/H_∞或H_∞/H_∞性能指数来产生相应的参考残差。借助于线性矩阵不等式(LMI)技术,构建故障检测滤波器(FDF),使得残余对故障敏感但对未知输入,混合模型不确定性,随机间歇测量和随机执行器故障不敏感。给出了说明性示例来证明所提出的方法的有效性。

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