Improvement of voltage stability and reduce power system losses by optimal GA-based allocation of multi-type FACTS devices

H. Baghaee, M. Jannati, B. Vahidi, S. Hosseinian, H. Rastegar
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引用次数: 71

Abstract

Modern power systems are prone to widespread failures. With the increase in power demand, operation and planning of large interconnected power system are becoming more and more complex, so power system will become less secure. Operating environment, conventional planning and operating methods can leave power system exposed to instabilities. Voltage instability is one of the phenomena which have result in a major blackout. Moreover, with the fast development of restructuring, the problem of voltage stability has become a major concern in deregulated power systems. To maintain security of such systems, it is desirable to plan suitable measures to improve power system security and increase voltage stability margins. FACTS devices can regulate the active and reactive power control as well as adaptive to voltage-magnitude control simultaneously because of their flexibility and fast control characteristics. Placement of these devices in suitable location can lead to control in line flow and maintain bus voltages in desired level and so improve voltage stability margins. This paper presents a genetic algorithm (GA) based allocation algorithm for FACTS devices considering cost function of FACTS devices and power system losses. Proposed algorithm is tested on IEEE 30 bus power system for optimal allocation of multi-type FACTS devices and results are presented.
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基于遗传算法的多类型FACTS器件优化配置提高电压稳定性,降低电力系统损耗
现代电力系统容易出现大范围故障。随着电力需求的增加,大型互联电力系统的运行和规划变得越来越复杂,电力系统的安全性将越来越低。运行环境、常规规划和运行方式会使电力系统处于不稳定状态。电压不稳定是造成重大停电事故的主要原因之一。此外,随着电网结构调整的快速发展,电网电压稳定问题已成为电网解除管制的主要问题。为了维护电力系统的安全,需要规划适当的措施来提高电力系统的安全性和增加电压稳定裕度。FACTS装置由于其灵活、快速的控制特性,可以同时调节有功和无功控制以及自适应电压幅值控制。将这些器件放置在合适的位置可以控制线路流量并将母线电压保持在所需的水平,从而提高电压稳定裕度。本文提出了一种考虑FACTS设备成本函数和电力系统损耗的基于遗传算法的FACTS设备分配算法。在ieee30总线电力系统上对该算法进行了测试,并给出了结果。
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