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Fault diagnosis and fault tolerant control for the non-Gaussian time-delayed stochastic distribution control system

机译:非高斯时滞随机分布控制系统的故障诊断与容错控制

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摘要

The purpose of fault diagnosis of stochastic distribution control (SDC) systems is to use the measured input and the system output probability density functions (PDFs) to obtain the fault information of the SDC system. When the target PDF is known, the purpose of fault tolerant control of stochastic distribution control system is to make the output PDF still track the given distribution using the fault tolerant controller. However, in practice, time delay may exist in the data (or image) processing, the modeling and transmission phases. When time delay is not considered, the effectiveness of the fault detection, diagnosis and fault tolerant control of stochastic distribution systems will be reduced. In this paper, the rational square-root B-spline is used to approach the output probability density function. In order to diagnose the fault in the dynamic part of such systems, it is then followed by the novel design of a nonlinear neural network observer-based fault diagnosis algorithm. The time delay term will be deleted in the stability proof of the observation error dynamic system. Based on the fault diagnosis information, a new fault tolerant controller based on PI tracking control is designed to make the post-fault probability density function still track the given distribution, which is dependent of the time delay term. Finally, simulations for the particle distribution control problem are given to show the effectiveness of the proposed approach.
机译:随机分布控制(SDC)系统的故障诊断的目的是使用测得的输入和系统输出概率密度函数(PDF)获得SDC系统的故障信息。当目标PDF已知时,随机分布控制系统的容错控制的目的是使用容错控制器使输出PDF仍然跟踪给定的分布。但是,实际上,在数据(或图像)处理,建模和传输阶段中可能存在时间延迟。如果不考虑时间延迟,则会降低随机配电系统的故障检测,诊断和容错控制的效率。在本文中,有理平方根B样条用于逼近输出概率密度函数。为了诊断此类系统的动态部分中的故障,随后进行了基于非线性神经网络观察者的故障诊断算法的新颖设计。时延项将在观测误差动态系统的稳定性证明中删除。基于故障诊断信息,设计了一种新的基于PI跟踪控制的容错控制器,以使故障后概率密度函数仍然跟踪给定的分布,该时间依赖于延迟项。最后,对粒子分布控制问题进行了仿真,以证明该方法的有效性。

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  • 来源
    《Journal of the Franklin Institute》 |2014年第3期|1577-1595|共19页
  • 作者

    Lina Yao; Bo Peng;

  • 作者单位

    School of Electrical Engineering, Zhengzhou University, Zhengzhou 450001, China;

    School of Electrical Engineering, Zhengzhou University, Zhengzhou 450001, China;

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  • 正文语种 eng
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