基于遗传算法的分布式发电FACTS控制器优化分配

Sattawat Burana, P. Thararak, P. Jirapong, Kannathat Mansuwan
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引用次数: 6

摘要

分布式发电(DG)和柔性交流输电系统(FACTS)可以提高配电系统的效率和发电量。然而,在不适当的分配下安装带有fact的DG可能会产生负面影响。本文提出了一种新的带FACTS的DG分配规划工具,用于确定带FACTS的DG的最佳位置和尺寸,以减少功率损耗。考虑DG和FACTS的最优潮流(OPF)是一个受泰国省电力局(PEA)电网规范、负荷限制、发电限制和电压限制等系统约束的系统功率损耗最小化问题。实验中使用的DG和FACTS分别为同步发电机和静态无功补偿器。利用MATLAB中的m-file脚本实现遗传算法(GA)进行优化。因此,在DIgSILENT软件中使用DIgSILENT编程语言(DPL)脚本确定每一代遗传算法的负荷流解和目标函数的评估。试验系统采用PEA现有的22kv配电系统。从地理信息系统(GIS)数据库中导入实际系统数据用于规划工具。仿真结果表明,利用所提出的工具,利用FACTS优化DG分配,降低了系统的功率损耗,改善了线路负荷,改善了电压分布。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal allocation of distributed generation with FACTS controller for electrical power loss reduction using genetic algorithm
Distributed generation (DG) and flexible alternating current transmission systems (FACTS) can be used to increase the efficiency and enhance power generation of distribution systems. However, the installation of DG with FACTS at inappropriate allocations can result in negative impacts. In this paper, a new DG with FACTS allocation planning tool is proposed for determining the optimal location and sizing of DG with FACTS to reduce power losses. The optimal power flow (OPF) with DG and FACTS is formulated as a minimization problem of system power losses subjected to system constraints such as the grid code from Provincial Electricity Authority (PEA) of Thailand, loading limits, generation limits, and voltage limits. DG and FACTS used in this experiment are a synchronous generator and static var compensator (SVC), respectively. Genetic algorithm (GA) implemented by an m-file script in MATLAB is used for the optimization technique. Consequently, evaluation of load flow solutions and objective functions in each generation of GA are determined using DIgSILENT Programing Language (DPL) script in DIgSILENT software. An existing 22 kV distribution system from PEA is used as a test system. The practical system data from a geographic information system (GIS) database are imported for the planning tool. The obtained simulation results show that the optimal allocation of DG with FACTS using proposed tool results in system power loss reduction, line loading and voltage profile improvement.
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