Optimalisasi Penempatan UPFC Pada Sistem Jawa Bali 500kv Menggunakan Algoritma Genetika

Danu Firmansyah, Istiyo Winarno
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Abstract

The transmission network is an important part of the power system to deliver electrical energy from the power  plant to the load, therefore the power system must be maximized to achieve optimal power flow, Unified Power Flow Control (UPFC) is one of the Flexible AC Transmission System (FACTS ) capable of controlling the power of the transmission line separately on electrical transmission and can be mounted on both the sender and the receiving end of the power. The UPFC power injection model to the transmission line is made in a power flow equation. In the Java Bali (Jali) 500 kV system analyzed by the Genetic Algorithm method, to produce a power injection  that  minimizes  the  active  and  reactive power losses of the transmission line without exceeding the UPFC device limit. In the Java Bali (Jali) 500 kV system analyzed by Genetic Algorithm method, the optimum UPFC value of Reactive Power injected  to  the  system for  bus  39  is  9695.593207MVar, bus 15 is 10598.78754 MVar, and on bus 37 is10755.88608 MVar. The total loss of channel power on  the  system  prior  to  installation  of  UPFC  is1815.775809 MW, while the total loss of channel power in the system after installing UPFC with GA is1537.391648 MW.
输电网络是电力系统将电能从发电厂输送到负荷的重要组成部分,因此电力系统必须实现最优潮流,统一潮流控制(UPFC)是一种灵活的交流输电系统(FACTS),能够在电力传输中单独控制输电线路的功率,可以安装在电源的发送端和接收端。UPFC对传输线的功率注入模型建立在功率流方程中。在爪哇巴厘(Jali) 500 kV系统中,采用遗传算法方法进行分析,在不超过UPFC设备限制的情况下,产生使传输线有功功率和无功功率损耗最小的功率注入。采用遗传算法对爪哇巴厘(Jali) 500 kV系统进行分析,得到39号母线、15号母线和37号母线注入系统无功功率的最佳UPFC值分别为9695.593207MVar、10598.78754 MVar和10755.88608 MVar。安装UPFC前系统通道功率总损耗为1815.775809 MW,安装GA后系统通道功率总损耗为1537.391648 MW。
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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