用蚁群优化算法完成500kv JAMALI系统的权变排序选择(N-1

Irnanda Priyadi, K. Ramli, N. Daratha, Evan Fathoni, T. S. Gunawan, E. Ihsanto
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引用次数: 0

摘要

印度尼西亚是一个拥有世界第四大人口的群岛国家。人口如此之多,对电力的需求也相应增加。目前,JAMALI互联系统为爪哇、马杜拉和巴厘岛的大多数印尼电力消费者提供服务。另一方面,提高电力系统的安全质量是电力系统必须满足的要求。为了保证电力系统的安全运行,采用蚁群优化算法对N-1个应急场景进行了仿真。本研究采用最大代价函数,通过初始参数初始化阶段、概率值计算阶段和0/1背包问题计算阶段实现蚁群算法。测试是通过改变背包的容量来进行的。从JAMALI 500kv系统电压性能指标分析结果来看,连接26号母线(Bangil)和27号母线(Paiton)的35号线电压性能指标最高,为95.39,连接Krian和Gresik母线的56号线电压性能指标次之。而连接46号公交车(格拉蒂)和47号公交车(南泗水)的59号线排名最低,最低值为95.14。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Completion of Contingency Ranking Selection (N-1) Using Ant Colony Optimization Algorithm on 500 kV JAMALI System
Indonesia is an archipelago nation with the world's fourth-largest population. With such a large population, the demand for electricity increases proportionately. At the moment, the JAMALI interconnection system serves the majority of Indonesia's electricity consumers in Jawa, Madura, and Bali. On the other hand, improving the electric power system's safety quality is a requirement that an electric power system must meet. To ensure the power system's security, the Ant Colony Optimization (ACO) algorithm was used to run several contingency scenarios (N-1). The ACO algorithm was implemented in this study through the initial parameter initialization stages, the probability value calculation stage, and the 0/1 knapsack problem calculation stage using the maximum cost function. The test is conducted by varying the capacity of the knapsack. According to the results of the voltage performance index on the JAMALI 500 kV system, the highest value was 95.39 on line 35 connecting bus 26 (Bangil) and bus 27 (Paiton), followed by NaN on line 56 connecting the Krian and Gresik buses. While line 59, which connects bus 46 (Grati) and bus 47 (South Surabaya), has the lowest ranking with the lowest value at 95.14.
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