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A New Approach for Optimal Placement of PMUs and Their Required Communication Infrastructure in Order to Minimize the Cost of the WAMS

机译:优化PMU及其所需通信基础结构的新方法,以最小化WAMS的成本

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摘要

In recent years, power utilities have been designing and implementing wide area measurement system (WAMS) to provide more intelligent monitoring, control, and protection for the power grid. In this paper, a new method is presented for the optimization of the cost of different parts of the WAMS. In this method, the cost of optimal placement of phasor measurement units (PMUs) and a phasor data concentrator (PDC), as well as their associated communication infrastructure (CI) are simultaneously considered and minimized. For this purpose, the binary imperialistic competition algorithm is used for the optimal placement of PMUs. Dijkstra’s single-source shortest-path algorithm is used to obtain the minimum CI cost. It is also used for optimal placement of PDC. Because of the good adaptability of the proposed methodology to understudy problem, the proposed method is implemented in different conditions of the power network such as contingency condition (e.g., a single-line outage or a single-PMU outage), and some important and practical considerations are provided. Practical considerations are the availability of preinstalled PMUs in some buses and the availability of the communication links in some parts of the power network. The effectiveness of the proposed method is verified on different IEEE standard test systems.
机译:近年来,电力公司一直在设计和实施广域测量系统(WAMS),以为电网提供更智能的监视,控制和保护。在本文中,提出了一种用于优化WAMS不同部分成本的新方法。在这种方法中,同时考虑并最小化了相量测量单元(PMU)和相量数据集中器(PDC)以及它们相关的通信基础结构(CI)的最佳放置成本。为此,将二进制帝国竞争算法用于PMU的最佳放置。 Dijkstra的单源最短路径算法用于获取最低CI成本。它还用于优化PDC的位置。由于所提出的方法对研究不足的适应性强,所提出的方法在电力网络的不同条件下实施,例如应急条件(例如单线停电或单PMU停电),并且一些重要且实用提供了注意事项。实际考虑因素是某些总线中预装的PMU的可用性以及电力网络某些部分中通信链路的可用性。在不同的IEEE标准测试系统上验证了该方法的有效性。

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