Diffusion widely linear adaptive estimation of system frequency in distributed power grids

S. Kanna, S. Talebi, D. Mandic
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引用次数: 25

Abstract

Motivated by the need for decentralized estimation in the electricity grid, we apply the diffusion augmented complex least mean square (D-ACLMS) algorithm to estimate the frequency of a three-phase power system under balanced and unbalanced voltage conditions in a distributed setting. In addition to using local measurements, the diffusion adaptation strategy allows nodes to share their frequency estimates with neighbouring nodes which enables the network to exploit multiple measurements of the voltage signal. The analysis provides convergence conditions of the D-ACLMS and also gives the bounds on parameter values which guarantee that the diffusion type of adaptation stabilizes the network. Simulations under both balanced and unbalanced conditions support the analysis.
分布式电网系统频率的扩散广义线性自适应估计
基于电网中分散估计的需要,我们应用扩散增广复最小均方(D-ACLMS)算法来估计分布式环境中平衡和不平衡电压条件下三相电力系统的频率。除了使用局部测量外,扩散适应策略允许节点与相邻节点共享其频率估计,从而使网络能够利用电压信号的多次测量。分析给出了D-ACLMS的收敛条件,并给出了参数值的界,保证了扩散型自适应使网络稳定。在平衡和不平衡条件下的模拟都支持了分析。
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