A combinatorial approach for transmission expansion & reactive power planning

M. Rahmani, M. Rashidinejad, E. Carreno, R. Romero
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引用次数: 12

Abstract

A metaheuristic technique for solving the short-term transmission network expansion and reactive power planning problems, at the same time, in regulated power systems using the AC model is presented. The problem is solved using a real genetic algorithm (RGA). For each topology proposed by RGA an indicator is employed to identify the weak buses for new reactive power sources allocation. The fitness function is calculated using the cost of each configuration as well as constraints deviation of an AC optimal power flow (OPF) in which the minimum reactive generation of new reactive sources and the active power losses are objectives. With allocation of reactive power sources at load buses, the circuit capacity increases and the cost of installation could be decreased. The method is tested in a well known test system, presenting good results when compared with other approaches.
输电扩容与无功规划的组合方法
提出了一种利用交流模型同时求解稳压电力系统短期输电网络扩容和无功规划问题的元启发式方法。该问题采用了一种真正的遗传算法(RGA)来解决。对于RGA提出的每一种拓扑结构,都使用一个指标来识别弱母线,以便分配新的无功电源。适应度函数是使用每个配置的成本以及交流最优潮流(OPF)的约束偏差来计算的,其中以新无功源的最小无功功率和有功损耗为目标。将无功电源配置在负载母线上,可以增加线路容量,降低安装成本。该方法在一个知名的测试系统中进行了测试,与其他方法相比,取得了良好的效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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