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首页> 外文期刊>Transactions of the Institute of Measurement and Control >Fault detection for singular networked control systems with randomly occurring delays and partially known distribution transmission delays
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Fault detection for singular networked control systems with randomly occurring delays and partially known distribution transmission delays

机译:具有随机发生的延迟和部分已知的分布传输延迟的奇异网络控制系统的故障检测

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In this paper, the fault detection problem is discussed for a class of discrete-time singular networked control systems with randomly occurring delays and network-induced delays. The considered randomly occurring delays include the multiple state delays and the infinite-distributed delay. Both of them are assumed to occur in random ways, which are governed by two independent stochastic variables satisfying the Bernoulli binary distribution. Network-induced delays are modeled as a discrete-time homogeneous Markov chain, and the transition probabilities of the Markov chain are partially known. A stochastic Lyapunov functional is constructed to design a full-order fault detection filter guaranteeing that the fault detection dynamics is stochastically admissible with a prescribed performance index. Hence, the fault detection filter design problem is converted into a convex optimization problem in terms of a set of linear matrix inequalities. If these linear matrix inequalities are feasible, the corresponding parameters of the designed fault detection filter are determined. Finally, a numerical example is addressed to demonstrate the effectiveness of the developed method.
机译:本文讨论了一类具有随机发生的时延和网络引起的时滞的离散时间奇异网络控制系统的故障检测问题。所考虑的随机发生的延迟包括多个状态延迟和无限分布的延迟。假定它们都以随机方式发生,这由满足伯努利二元分布的两个独立随机变量控制。网络引起的延迟被建模为离散时间齐次马尔可夫链,并且马尔可夫链的转移概率是部分已知的。构造了一个随机Lyapunov函数,以设计一个全阶故障检测滤波器,从而确保以规定的性能指标随机允许故障检测动力学。因此,根据一组线性矩阵不等式,将故障检测滤波器的设计问题转换为凸优化问题。如果这些线性矩阵不等式是可行的,则确定设计的故障检测滤波器的相应参数。最后,通过数值例子说明了所开发方法的有效性。

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