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Recursive distributed filtering for two-dimensional shift-varying systems over sensor networks under stochastic communication protocols

机译:随机通信协议下传感器网络的二维移位变化系统递归分布式滤波

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This paper is concerned with the distributed filtering problem for a class of two-dimensional shift-varying systems over sensor networks subject to stochastic communication protocol (SCP) over a finite horizon. The communication between the sensor nodes and the filters is implemented through shared channels of limited capacity. To avoid data collisions, the SCP is applied to determine the transmission order of the signals/packets for each sensor. The considered scheduling behavior is characterized by mutually uncorrelated random variables with known probability distributions. Recursive distributed filters are proposed to estimate the system state through available information from both individual and neighboring nodes in the sensor network according to a given topology. Attention is focused on the design of distributed filters in order to ensure the locally minimal upper bound on the error variance of the state estimation. Sufficient conditions are first established, via intensive stochastic analysis and mathematical induction, on the existence of an upper bound of the estimation error variance. Then, by means of a matrix simplification technique, the desired filter gains are designed to optimize the obtained upper bound at each shift step. Finally, a practical example is given to verify the effectiveness of the proposed filter strategy. (C) 2020 Elsevier Ltd. All rights reserved.
机译:本文涉及通过在有限范围内通过随机通信协议(SCP)的传感器网络上一类二维移位改变系统的分布式过滤问题。传感器节点和滤波器之间的通信通过有限容量的共享信道实现。为了避免数据冲突,应用SCP以确定每个传感器的信号/分组的传输顺序。所考虑的调度行为的特征在于具有已知概率分布的相互不相关的随机变量。提出递归分布式滤波器通过根据给定拓扑的传感器网络中的各个和相邻节点的可用信息来估计系统状态。注意力集中在分布式过滤器的设计上,以确保状态估计的误差方差的局部最小界限。首先通过强化随机分析和数学诱导建立充足的条件,在估计误差方差的上限的存在之上。然后,通过矩阵简化技术,设计期望的过滤器增益被设计为优化每个换档步骤的获得的上限。最后,给出了一个实际的例子来验证所提出的过滤策略的有效性。 (c)2020 elestvier有限公司保留所有权利。

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