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首页> 外文期刊>Cybernetics, IEEE Transactions on >Interval Observer-Based Fault Isolation for Discrete-Time Fuzzy Interconnected Systems With Unknown Interconnections
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Interval Observer-Based Fault Isolation for Discrete-Time Fuzzy Interconnected Systems With Unknown Interconnections

机译:具有未知互连的离散模糊互连系统基于间隔观测器的故障隔离

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摘要

This paper is concerned with the fault isolation problem for discrete-time fuzzy interconnected systems with unknown interconnections. First, for each subsystem, a fault isolation interval observer is constructed by taking into account the bounds of the unknown interconnections and subsystem disturbances. Then, l and H performances are introduced to improve the tightness of the residual intervals and the sensitivity to their own faults, respectively. Furthermore, the fault isolation decision is made by determining whether the zero value is excluded from each residual interval. By utilizing the piecewise Lyapunov functions and dilated linear matrix inequalities, the obtained observer design conditions are less conservative than the existing results with the common and diagonal Lyapunov functions. Finally, simulation results are presented for showing the effectiveness and superiority of the proposed method.
机译:本文关注具有未知互连的离散时间模糊互连系统的故障隔离问题。首先,对于每个子系统,通过考虑未知互连和子系统干扰的范围来构造故障隔离间隔观察器。然后,引入l和H性能分别改善残差间隔的紧密度和对自身故障的敏感性。此外,通过确定是否从每个剩余间隔中排除零值来做出故障隔离决策。通过利用分段Lyapunov函数和扩张的线性矩阵不等式,所获得的观测器设计条件不如使用通用和对角Lyapunov函数的现有结果保守。最后,仿真结果表明了该方法的有效性和优越性。

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