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Fault Diagnosis and Minimum Rational Entropy Fault Tolerant Control of Stochastic Distribution Collaborative Systems

机译:随机分布协作系统的故障诊断和最小合理熵容差控制

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摘要

In this paper, a fault-tolerant control scheme is presented for a class of stochastic distribution collaborative control systems, which are composed of three subsystems connected in series to complete the control target. The radial basis function neural network is used to approximate the output probability density function of the third subsystem, which is also the output of the entire system. When fault occurs in the first subsystem, an adaptive diagnostic observer is designed to estimate the value of fault. However, the first subsystem does not have the ability of self-recovery, minimum rational entropy controllers are designed in the latter subsystems to compensate the influence of the fault and minimize the entropy of the system output. A numerical simulation is given to verify the effectiveness of the proposed scheme.
机译:本文介绍了一类随机分布协同控制系统的容错控制方案,其由串联连接的三个子系统组成以完成控制目标。径向基函数神经网络用于近似第三子系统的输出概率密度函数,这也是整个系统的输出。当第一子系统中发生故障时,自适应诊断观察器旨在估计故障的值。但是,第一子系统没有自我恢复的能力,最小合理的熵控制器在后一个子系统中设计,以补偿故障的影响并最大限度地减少系统输出的熵。给出了数值模拟来验证所提出的方案的有效性。

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