Preserving observability in synchrophasors using Optimal Redundancy Criteria (ORC)

Ranganath Vallakati, Anupam Mukherjee, P. Ranganathan
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引用次数: 2

Abstract

This paper presents a linear programming based solution for an Optimal Placement of Phasor Measurement Units (PMU) problem (OPP) under contingency situations. With the increasing usage of synchrophasors or PMUs for smart grid monitoring and control, the problem of PMU placement has become a major concern due to high installation costs. This paper uses a Linear Programming (ILP) approach to find optimal solutions. This paper shows that performance of the LP constraints and formulation makes the approach very attractive for smaller utilities with limited budgets. This is investigated with and without zero injection cases in the CPLEX solver. This paper also proposes an index called the Optimal Redundancy Criteria (ORC) that assists utilities in providing redundant observability for critical buses in the system. The proposed approach yields optimal solutions for full and redundant observabilities within 15 milliseconds (ms) for test bed cases such as the IEEE 14, 30, 57, 118, and 300 bus systems, and a 208 bus Southern region Indian power grid (SRIPG).
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利用最优冗余准则(ORC)保持同步相量的可观测性
本文提出了一种基于线性规划的突发情况下相量测量单元(PMU)优化配置问题(OPP)的解。随着同步量或PMU用于智能电网监测和控制的使用越来越多,由于安装成本高,PMU的放置问题已成为一个主要问题。本文采用线性规划(ILP)方法寻找最优解。本文表明,LP约束和公式的性能使得该方法对预算有限的小型公用事业公司非常有吸引力。在CPLEX求解器中对零注入和零注入情况进行了研究。本文还提出了一个称为最优冗余标准(ORC)的索引,该索引可帮助公用事业公司为系统中的关键总线提供冗余可观察性。所提出的方法可以在15毫秒(ms)内为IEEE 14、30、57、118和300总线系统以及208总线南部印度电网(SRIPG)等测试平台案例提供完全和冗余可观测性的最佳解决方案。
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