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A fault detection observer design for LPV systems in finite frequency domain

机译:有限频域LPV系统的故障检测观察器设计

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摘要

This paper addresses the fault detection observer design problem for linear parameter-varying systems. Two finite frequency performance indexes are introduced to measure the fault sensitivity and the disturbance robustness. First, the H- index fault sensitivity condition in finite frequency domain is obtained by generalised Kalman-Yakubovich-Popov lemma and new linearisation techniques. Then, with the aid of Kalman-Yakubovich-Popov lemma and projection lemma, the stability and robustness conditions are derived. It turns out that the non-convexity problem which is caused by dealing with the above three conditions can be translated into a bilinear matrix inequality optimisation problem by increasing the dimensions of slack variable matrix. An iterative linear matrix inequality algorithm is proposed to get the solution. The effectiveness of the filter is shown via three numerical examples.
机译:本文解决了线性参数可变系统的故障检测观测器设计问题。引入了两个有限的频率性能指标来测量故障敏感性和干扰鲁棒性。首先,通过广义Kalman-Yakubovich-Popov引理和新的线性化技术获得了有限频域的H指数故障敏感性条件。然后,借助卡尔曼-雅库波维奇-波波夫引理和投影引理,推导了稳定性和鲁棒性条件。结果表明,通过增加松弛变量矩阵的维数,可以将由上述三个条件引起的非凸性问题转化为双线性矩阵不等式优化问题。提出了一种迭代线性矩阵不等式算法来求解。通过三个数值示例说明了过滤器的有效性。

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