负荷变化时pmu最优分配的动态估计解

M. Ravindra, R. S. Rao
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引用次数: 6

摘要

本文提出了一种新的二进制整数线性规划(BILP)方法,该方法考虑了零注入约束的建模,用于网络中pmu的优化分配,并生成了负荷变化情况下的动态估计解。考虑零注入总线约束建模,以减少系统中pmu的数量。为了发现电力系统在负荷变化时的动态特性,提出了一种将PMU与常规测量相结合的动态状态估计方法。将该方法与传统的加权最小二乘(WLS)状态估计方法在负荷变化情况下进行比较。在IEEE 14、30、57和118总线系统上进行了MATLAB仿真,结果表明了所提方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dynamic state estimation solution with optimal allocation of PMUs in presence of load changes
This paper presents a new Binary Integer Linear Programming (BILP) approach considering modeling of zero injection constraints for optimal allocation of PMUs in the network and to generate dynamic state estimation solution in presence of load changes. Zero injection bus constraint modeling is considered to minimize the number of PMUs in the system. To find the dynamic behavior of power system in presence of load changes, a dynamic state estimation method integrating PMU and conventional measurements is proposed. The proposed dynamic state estimation method with optimal PMU allocations is compared with traditional Weighted Least Squares (WLS) state estimation method in presence of load changes. MATLAB simulations carried out on IEEE 14, 30, 57 and 118 bus systems and their results show the effectiveness of proposed method.
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