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首页> 外文期刊>International Journal of Energy Optimization and Engineering: An official publication of the Information Resources Management Association >A Comparative Study of BAT and Firefly Algorithms for Optimal Placement and Sizing of Static VAR Compensator for Enhancement of Voltage Stability
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A Comparative Study of BAT and Firefly Algorithms for Optimal Placement and Sizing of Static VAR Compensator for Enhancement of Voltage Stability

机译:BAT和Firefly算法用于静态VAR补偿器最佳放置和尺寸调整以增强电压稳定性的比较研究

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摘要

Modern electric power utilities are facing many challenges due to increasing power demand but the growth of power generation and transmission has been limited due to limited resources, environmental restrictions and right-of-way problems. These problems can be minimized by installing Flexible Alternating Current Transmission System (FACTS) devices in modern electric utilities to optimize the existing transmission system. Most effective use of the FACTS devices depend on the fact, how these devices are placed in the power system, i.e. the location and size. An optimal location and size of FACTS devices allows controlling its power flows and thus enhances the stability and reliability of the power systems. In this paper, Firefly Algorithm (FA) and BAT Algorithm (BAT) have been applied and compared to determine the optimal location and size of Static VAR Compensator (SVC) in a power system to improve voltage stability subjected to minimize the active power losses, fuel cost, branching loading and voltage deviation. The effectiveness of the proposed algorithms and improvement of power system stability has been demonstrated on IEEE 57 bus system using fast voltage stability index. The results obtained with variation of parameters of Firefly and BAT Algorithms has been studied and compared with Genetic Algorithm. The results are presented and analyzed.
机译:由于电力需求的增加,现代电力公司面临许多挑战,但是由于资源有限,环境限制和通行权问题,发电和输电的增长受到了限制。通过在现代电力公司中安装柔性交流输电系统(FACTS)设备以优化现有输电系统,可以将这些问题最小化。 FACTS设备的最有效使用取决于以下事实:这些设备在电源系统中的放置方式,即位置和大小。 FACTS设备的最佳位置和大小可控制其潮流,从而增强电源系统的稳定性和可靠性。本文通过应用Firefly算法(FA)和BAT算法(BAT)进行比较,以确定电力系统中静态VAR补偿器(SVC)的最佳位置和大小,以提高电压稳定性,从而最大程度地减少有功功率损耗,燃料成本,支路负载和电压偏差。在IEEE 57总线系统上,使用快速电压稳定性指标已证明了所提出算法的有效性和电力系统稳定性的提高。研究了萤火虫和BAT算法的参数变化所获得的结果,并将其与遗传算法进行了比较。结果被提出和分析。

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