首页> 外文期刊>Journal of circuits, systems and computers >Recursive Five-Step Filter for State and Fault Estimation of Linear Descriptor Stochastic Systems with Unknown Disturbances
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Recursive Five-Step Filter for State and Fault Estimation of Linear Descriptor Stochastic Systems with Unknown Disturbances

机译:递归五步滤波器,用于未知扰动的线性描述随机系统的状态和故障估计

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摘要

This study deals with state and fault estimation for linear descriptor systems. The main contribution lies in the synthesis of a novel filter to estimate both state and fault for linear discrete-time descriptor stochastic systems in an unbiased minimum variance sense and without making any assumption on the direct feedthrough matrix. In this study, an equivalent standard state-space system (ESSS) with fault and unknown disturbances is firstly obtained for the considered descriptor stochastic system, and then a recursive filter is designed based on the ESSS representation. Moreover, this study proposes a recursive filter design method to deal with the effect of the unknown disturbances. The relationship between the proposed filter and the existing results in the literature is addressed. Finally, an illustrative example is given to illustrate the effectiveness of the recursive five-step state and fault estimator.
机译:这项研究涉及线性描述符系统的状态和故障估计。主要贡献在于合成了一种新颖的滤波器,可以在无偏最小方差意义上估计线性离散时间描述符随机系统的状态和故障,而无需对直接馈通矩阵进行任何假设。在这项研究中,首先针对所考虑的描述符随机系统获得了具有故障和未知扰动的等效标准状态空间系统(ESSS),然后基于ESSS表示设计了递归滤波器。此外,本研究提出了一种递归滤波器设计方法来处理未知干扰的影响。提出的过滤器和文献中现有结果之间的关系得到解决。最后,给出了一个示例性例子来说明递归五步状态和故障估计器的有效性。

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