Distributed recursive fault estimation with binary encoding schemes over sensor networks

IF 3.2 Q2 AUTOMATION & CONTROL SYSTEMS
Peng-An Wen, Xuerong Li, Nan Hou, Shujuan Mu
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引用次数: 39

Abstract

In this paper, we investigate the distributed recursive fault estimation problem for a class of discrete time-varying systems with binary encoding schemes over a sensor network. The fault signal with zero second-order difference is taken into account to reflect the sensor failures. Since the communication bandwidth in practice is constrained, the binary encoding schemes are exploited to regulate the signal transmission from the neighbouring sensors to the local fault estimator. In addition, due to the influence of channel noises, each bit might change with a small crossover probability. In the presence of sensor faults and bit errors, an upper bound for the estimation error covariance matrix is ensured and minimized at each time step via designing the gain matrices of the estimator. Finally, the effectiveness of the method is verified by a simulation.
基于二进制编码的传感器网络分布式递归故障估计
本文研究了一类具有二进制编码的离散时变系统在传感器网络上的分布式递归故障估计问题。采用二阶差分为零的故障信号来反映传感器的故障。由于实际通信带宽有限,采用二进制编码方案来调节信号从相邻传感器到局部故障估计器的传输。此外,由于信道噪声的影响,每个比特可能以很小的交叉概率发生变化。在存在传感器故障和误码的情况下,通过设计估计器的增益矩阵,保证了估计误差协方差矩阵在每个时间步上的上界并使其最小化。最后,通过仿真验证了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Systems Science & Control Engineering
Systems Science & Control Engineering AUTOMATION & CONTROL SYSTEMS-
CiteScore
9.50
自引率
2.40%
发文量
70
审稿时长
29 weeks
期刊介绍: Systems Science & Control Engineering is a world-leading fully open access journal covering all areas of theoretical and applied systems science and control engineering. The journal encourages the submission of original articles, reviews and short communications in areas including, but not limited to: · artificial intelligence · complex systems · complex networks · control theory · control applications · cybernetics · dynamical systems theory · operations research · systems biology · systems dynamics · systems ecology · systems engineering · systems psychology · systems theory
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