基于模糊模型的随机混合时延和连续丢包鲁棒故障检测。

Hongli Dong, Zidong Wang, James Lam, Huijun Gao
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引用次数: 246

摘要

研究了一类具有随机混合时滞和连续丢包的不确定离散Takagi-Sugeno模糊系统的基于网络的鲁棒故障检测问题。混合时滞既包括多个离散时滞,也包括无限分布时滞。引入一系列随机变量来控制离散时延、分布时延和连续丢包的随机发生,其中所有随机变量相互独立但服从伯努利分布。本文的主要目的是设计一种模糊故障检测滤波器,使整个故障检测动态在均方内呈指数稳定,同时使残差信号与故障信号之间的误差尽可能小。通过深入的随机分析,首先建立了期望模糊故障检测滤波器存在的充分条件,然后建立了期望滤波器增益的可解性条件。此外,通过求解一个辅助凸优化问题,得到了所处理的鲁棒模糊故障检测问题的最优性能指标。算例表明了所提出的设计方法的有效性和实用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fuzzy-model-based robust fault detection with stochastic mixed time delays and successive packet dropouts.

This paper is concerned with the network-based robust fault detection problem for a class of uncertain discrete-time Takagi-Sugeno fuzzy systems with stochastic mixed time delays and successive packet dropouts. The mixed time delays comprise both the multiple discrete time delays and the infinite distributed delays. A sequence of stochastic variables is introduced to govern the random occurrences of the discrete time delays, distributed time delays, and successive packet dropouts, where all the stochastic variables are mutually independent but obey the Bernoulli distribution. The main purpose of this paper is to design a fuzzy fault detection filter such that the overall fault detection dynamics is exponentially stable in the mean square and, at the same time, the error between the residual signal and the fault signal is made as small as possible. Sufficient conditions are first established via intensive stochastic analysis for the existence of the desired fuzzy fault detection filters, and then, the corresponding solvability conditions for the desired filter gains are established. In addition, the optimal performance index for the addressed robust fuzzy fault detection problem is obtained by solving an auxiliary convex optimization problem. An illustrative example is provided to show the usefulness and effectiveness of the proposed design method.

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