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A Parallel Bees Algorithm for ATC Enhancement in Modern Electrical Network

机译:现代电网中ATC增强的并行Bees算法

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This paper presents a parallel-based methodology for placement of Flexible AC Transmission Systems (FACTS) devices in order to reduce the time it takes to reach a solution while maximizing the available transfer capability (ATC) of a given power system. The Parallel Bees Algorithms (PBA) simultaneously searches the location, size and types of FACTS devices to enhance ATC between the source and sink area. Four types of emerging FACTS devices are used namely, Thyristor Controlled Series Compensator (TCSC), Static Var Compensator (SVC), Unified Power Flow Controller (UPFC) and Thyristor Controlled Phase Shift Transformer (TCPST). The IEEE118 Bus system is used to illustrate the applicability of the proposed algorithm to enhance ATC effectively. The results obtained are very encouraging and compared to a Bees Algorithm (BA), Genetic Algorithm (GA) and Parallel Genetic Algorithms (PGA). The results show that parallel computing technique can be used effectively to reduce time to reach a solution for large scale network and FACTS devices have proven their utility for ATC improvement.
机译:本文提出了一种基于并行方法的柔性交流传输系统(FACTS)器件放置方法,以减少达到解决方案所需的时间,同时最大程度地提高给定电力系统的可用传输能力(ATC)。并行Bees算法(PBA)同时搜索FACTS设备的位置,大小和类型,以增强源区和汇区之间的ATC。使用了四种新型的FACTS器件,分别是晶闸管控制的串联补偿器(TCSC),静态无功补偿器(SVC),统一潮流控制器(UPFC)和晶闸管控制的相移变压器(TCPST)。 IEEE118总线系统用于说明所提出的算法有效增强ATC的适用性。所获得的结果令人鼓舞,并且与Bees算法(BA),遗传算法(GA)和并行遗传算法(PGA)进行了比较。结果表明,并行计算技术可以有效地减少为大型网络提供解决方案所需的时间,并且FACTS设备已证明其可用于改进ATC。

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