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On designing an extended Hi/H-FDF for a class of nonlinear Systems

机译:在设计扩展的 H i / H -FDF 用于一类非线性系统

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This paper investigates the problem of fault detection (FD) for a class of discrete-time nonlinear systems by using H i /H ∞ optimization. A finite horizon index H i and H ∞ norm are introduced to represent the sensitivity of residual to fault and robustness of residual against unknown input, respectively. Then the problem of residual evaluation is formulated as to a nonlinear H i /H ∞ optimization. It is shown that a local optimal H i /H ∞ FDF can be obtained by recursively computing of extended Kalman filter and a post-filter. Moreover, the local optimal solution is not unique and, for an arbitrary feasible filter gain matrix, a dynamic post-filter is also presented. A numerical example is given to demonstrate the effectiveness of the proposed method.
机译:本文利用H i / H∞优化方法研究了一类离散时间非线性系统的故障检测(FD)问题。引入了有限的水平指数H i和H∞范数,分别表示残差对故障的敏感性和残差对未知输入的鲁棒性。然后,针对非线性H i / H∞优化,提出了残差评估问题。结果表明,通过递归计算扩展卡尔曼滤波器和后置滤波器可以得到局部最优的H i / H∞FDF。此外,局部最优解不是唯一的,并且对于任意可行的滤波器增益矩阵,还提出了动态后置滤波器。数值例子说明了该方法的有效性。

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