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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >OnH∞Fault Estimator Design for Linear Discrete Time-Varying Systems under Unreliable Communication Link
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OnH∞Fault Estimator Design for Linear Discrete Time-Varying Systems under Unreliable Communication Link

机译:通信链路不可靠的线性离散时变系统的H∞故障估计器设计

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This paper investigates theH∞fixed-lag fault estimator design for linear discrete time-varying (LDTV) systems with intermittent measurements, which is described by a Bernoulli distributed random variable. Through constructing a novel partially equivalent dynamic system, the fault estimator design is converted into a deterministic quadratic minimization problem. By applying the innovation reorganization technique and the projection formula in Krein space, a necessary and sufficient condition is obtained for the existence of the estimator. The parameter matrices of the estimator are derived by recursively solving two standard Riccati equations. An illustrative example is provided to show the effectiveness and applicability of the proposed algorithm.
机译:本文研究了具有间歇测量的线性离散时变(LDTV)系统的H∞固定滞后故障估计器设计,该设计由伯努利分布随机变量描述。通过构建新颖的部分等效动态系统,将故障估计器设计转换为确定性二次最小化问题。通过在Kerin空间中应用创新重组技术和投影公式,可以获得估计量存在的充要条件。估计器的参数矩阵是通过递归求解两个标准Riccati方程得出的。提供了一个说明性示例,以显示所提出算法的有效性和适用性。

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