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Asynchronous fault detection filtering for piecewise homogenous Markov jump linear systems via a dual hidden Markov model

机译:异步故障检测滤波,用于通过双隐马尔可夫模型进行分段均匀马尔可夫跳跃线性系统

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摘要

This work investigates the asynchronous fault detection filtering issue for discrete-time piecewise homogeneous Markov jump systems. By resorting to a dual hidden Markov model, an asynchronous fault detection filter is presented which can follow up the system modes. Utilizing the stochastic Lyapunov function approach, sufficient conditions are devised to make the resultant Markov jump systems be stochastically stable and hold a specified H_∞ performance level. Finally, a real-time experiment based on the automotive electronic throttle body is employed to validate the devised asynchronous fault detection filter which can find the faults after the occurrences in the case of no false alarm.
机译:这项工作调查了离散时间分段同质马尔可夫跳转系统的异步故障检测滤波问题。通过借助双隐马尔可夫模型,提出了一种异步故障检测滤波器,可以跟进系统模式。利用随机Lyapunov函数方法,设计了充分的条件,以使所得马尔可夫跳跃系统随机稳定并保持指定的H_∞性能水平。最后,采用基于汽车电子节流阀的实时实验来验证设计的异步故障检测滤波器,该故障检测过滤器可以在没有误报的情况下出现发生故障。

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