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Robust Fault Detection and Isolation for Uncertain Switched Systems under Asynchronous Switching with Adaptive Threshold

机译:具有自适应阈值的异步切换下不确定切换系统的鲁棒故障检测与隔离

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The problem of fault detection and isolation for uncertain continuous-time linear switched systems in the presence of disturbances and noise is addressed in this paper. A robust residual generator is proposed which is based on asynchronously switching filters, where “asynchronous” means there is a lag between switching of filters and subsystems. To address the issue, fault detection problem is formulated as mixed H - /H ∞ filtering problem. In proposed H - /H ∞ technique, the effect of fault on residual signal is fixed to some maximum possible index and then influence of unknown inputs (disturbances and noise) on residual is minimized. In addition proposed filter has prominence of having fault isolation capability along with fault detection. To improve the fault detection capability adaptive threshold is set which takes into account local disturbance levels, the current operational mode and applied input signal. Then, solution is designed for boost converter switched system application and simulations are presented to illustrate the efficacy of the proposed framework.
机译:本文研究了存在干扰和噪声的不确定连续线性开关系统的故障检测和隔离问题。提出了一种基于异步切换滤波器的鲁棒残差生成器,其中“异步”表示在滤波器和子系统切换之间存在滞后。为了解决该问题,将故障检测问题表述为混合H-/ H∞滤波问题。在提出的H-/ H∞技术中,将故障对残差信号的影响固定为某个最大可能指标,然后将未知输入(干扰和噪声)对残差的影响最小化。另外,提出的滤波器具有与故障检测一起具有故障隔离能力的突出之处。为了提高故障检测能力,设置了自适应阈值,该阈值考虑了本地干扰水平,当前操作模式和施加的输入信号。然后,针对升压转换器开关系统应用设计了解决方案,并进行了仿真,以说明所提出框架的有效性。

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