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Efficient variable step-size diffusion normalised least-mean-square algorithm

机译:高效的变步长扩散归一化最小均方算法

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摘要

An efficient variable step-size diffusion normalised least-mean-square algorithm is proposed via a mean-square deviation (MSD) analysis for the distributed estimation. The proposed algorithm has two distinguishing features for computational efficiency. In the adaptation step, an intermittent adaptation rule that dynamically adjusts an update interval is proposed to reduce the redundant updates. In the diffusion step, instead of the existing combination rules, a selection rule is proposed to select the intermediate estimate of the most reliable node among its neighbour nodes for the estimate at each node. Moreover, to achieve both fast convergence rate and low steady-state error, a variable step size is obtained by minimising the MSD.
机译:通过均方偏差(MSD)分析,为分布估计提出了一种有效的变步长扩散归一化最小均方算法。所提出的算法在计算效率上具有两个明显的特点。在适配步骤中,提出了动态调整更新间隔的间歇性适配规则,以减少冗余更新。在扩散步骤中,代替现有的组合规则,提出了一种选择规则,以选择其相邻节点中最可靠节点的中间估计,以用于每个节点的估计。此外,为了实现快速收敛速度和低稳态误差,通过最小化MSD获得了可变步长。

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