Optimal capacitor placement using deterministic and genetic algorithms

M. Delfanti, G. Granelli, P. Marannino, M. Montagna
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引用次数: 203

Abstract

A procedure for solving the power capacitor placement problem is presented. The objective is to determine the minimum investment required to satisfy suitable reactive constraints. Due to the discrete nature of reactive compensation devices, optimal capacitor placement leads to a nonlinear programming problem with mixed (discrete and continuous) variables. It is solved with an iterative algorithm based on successive linearizations of the original nonlinear model. The mixed integer linear programming problem to be solved at each iteration of the procedure is tackled by applying both a deterministic method (branch and bound) and genetic algorithm techniques. A hybrid procedure, aiming to exploit the best features of both algorithms is also considered. The proposed procedures are tested and compared with reference to a small CIGRE system and two actual networks derived from the Italian transmission and distribution system.
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使用确定性和遗传算法的最佳电容器放置
提出了一种解决电力电容器放置问题的方法。目标是确定满足适当的反应性约束所需的最小投资。由于无功补偿装置的离散性,电容器的最优配置导致了一个混合(离散和连续)变量的非线性规划问题。采用基于原非线性模型连续线性化的迭代算法求解。采用确定性方法(分支定界法)和遗传算法技术解决了每次迭代过程中要解决的混合整数线性规划问题。本文还考虑了一种旨在利用两种算法的最佳特性的混合过程。并与一个小型CIGRE系统和意大利输配电系统的两个实际网络进行了测试和比较。
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