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Fault detection for a class of non-linear networked control systems with data drift

机译:一类带有数据漂移的非线性网络控制系统的故障检测

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In this paper, the fault detection problem is studied for a class of non-linear discrete-time networked control systems (NCSs). An individual stochastic variable satisfying a certain probabilistic distribution is utilised to describe the data drift of each sensor. The random transmission delays with the upper bound and the data drift phenomena are taken into account in a unified framework. By augmenting the states of the original non-linear NCS and the constructed full-order fault detection filter, the resulting fault detection dynamics is converted into an filtering problem of a non-linear time-delay system. A sufficient condition for the existence of the designed fault detection filter is given in terms of a feasible linear matrix inequality, guaranteeing that the fault detection dynamics is stochastically stable and attains the prescribed attenuation level. Finally, a numerical example is presented to show the effectiveness of the proposed method.
机译:本文研究了一类非线性离散时间网络控制系统(NCS)的故障检测问题。利用满足一定概率分布的单个随机变量来描述每个传感器的数据漂移。在统一框架中考虑了具有上限的随机传输延迟和数据漂移现象。通过增加原始非线性NCS的状态和构造的全阶故障检测滤波器的状态,将所得的故障检测动态转化为非线性时滞系统的滤波问题。根据可行的线性矩阵不等式,给出了设计故障检测滤波器存在的充分条件,从而确保了故障检测动态随机稳定并达到了规定的衰减水平。最后,通过数值例子说明了该方法的有效性。

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