Estimate the Lost Phasor Measurement Unit Data Using Alternating Direction Multipliers Method

Mang Liao, Di Shi, Zhe Yu, Wendong Zhu, Zhiwei Wang, Yingmeng Xiang
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引用次数: 12

Abstract

This paper presents a novel algorithm for recovering missing data of phasor measurement units (PMUs). Due to the low-rank property of PMU data, missing measurement estimation can be formulated as a low-rank matrix-completion problem. Based on maximum-margin matrix factorization, we propose an efficient algorithm based on alternating direction method of multipliers (ADMM) for solving the matrix completion problem. Comparing to existing approaches, the proposed ADMM based algorithm does not need to estimate the rank of the target data matrix and provides better performance in computation complexity. In addition, we consider the case of measurements missing from all PMU channels and provide a strategy of reshaping the matrix which contains the received PMU data for estimation. Numerical results using PMU measurements from IEEE 68-bus power system model illustrate the effectiveness and efficiency of the proposed approaches.
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用交替方向乘法器估计损失相量测量单元数据
提出了一种恢复相量测量单元缺失数据的新算法。由于PMU数据的低秩性,缺失测量估计可以表述为一个低秩矩阵补全问题。基于最大边际矩阵分解,提出了一种基于交替方向乘法器(ADMM)的矩阵补全算法。与现有算法相比,该算法不需要估计目标数据矩阵的秩,在计算复杂度方面具有更好的性能。此外,我们考虑了所有PMU通道中测量缺失的情况,并提供了一种重构矩阵的策略,该矩阵包含接收到的PMU数据用于估计。采用IEEE 68总线电力系统模型的PMU测量结果表明了所提方法的有效性和效率。
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