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基于飞蛾扑火算法的电力系统无功优化控制

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电力系统的合理无功优化有利于电力系统的稳定、优质、经济运行,飞蛾扑火算法以其收敛速度快速的优势可以适用于电力系统的无功优化控制.基于飞蛾扑火算法研究了电力系统无功优化方法,研究了飞蛾扑火的原理,建立了目标函数和约束条件.通过 10 机 39 节点系统验证了该方法的有效性.结果表明,MFO可以有效对系统进行无功优化,减少了系统的网损,且MFO收敛速度较快.
Reactive Power Optimization Control of Electric Power System Based on Moth Moth-flame Optimization
The reasonable reactive power optimization of power system is beneficial to the stable,high quality and economic operation of power system.The moth fire fighting algorithm can be applied to the reactive power optimiza-tion control of power system with the advantage of its fast convergence speed.This paper studies the reactive power optimization method based on moth extinguishing algorithm,studies the principle of moth extinguishing,and establi-shes the objective function and constraints.The effectiveness of the method in this paper is verified by a 10-machine 39-node system.The results show that MFO can effectively optimize the system,reduce the network loss,and the MFO converges faster.

power systemnet lossmoth-flame optimizationreactive power optimization

刘亚男、李伟龙、张晓晴、胡雅洁、潘旭新、张师

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国网河南省电力公司洛阳供电公司,河南 洛阳 471000

东北电力大学电气工程学院,吉林 吉林 132012

电力系统 网损 飞蛾扑火算法 无功优化

2024

电气开关
沈阳电气传动研究所

电气开关

影响因子:0.281
ISSN:1004-289X
年,卷(期):2024.62(5)