Frequency constrained optimal power flow based on glow-worm swarm optimization in islanded microgrids

E. R. Sanseverino, N. Nguyen, M. L. Di Silvestre, G. Zizzo, F. de Bosio, Q. Tran
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引用次数: 13

Abstract

This work presents an application of a swarm optimization method to solve the optimal power flow problem taking into account the constraints of frequency and line ampacity in three-phase islanded Microgrids. Each generation unit is equipped with a Power Electronics Interface. In the considered formulation, the droop control parameters are considered as variables to be adjusted by a higher control level, while the frequency is kept in rated bounds. Another typical constraint for OPF formulation, the max ampacity of each line, is also considered. Two case studies with different dimensions and electrical features have been considered and the obtained results show the efficiency of the proposed approach that can be straightforward extended to unbalanced systems.
孤岛微电网基于荧光虫群优化的频率约束最优潮流
本文应用群优化方法求解三相孤岛微电网中考虑频率和线路容量约束的最优潮流问题。每一代机组都配备了一个电力电子接口。在所考虑的公式中,下垂控制参数被认为是由更高的控制级别调整的变量,而频率保持在额定范围内。另外还考虑了OPF公式的另一个典型约束,即每条线的最大容量。通过两个具有不同尺寸和电气特征的案例研究,结果表明所提出的方法可以直接推广到不平衡系统。
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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