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首页> 外文期刊>International journal of systems assurance engineering and management >Optimal location and control of combined SVC-TCSC controller to enhance power system loadability
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Optimal location and control of combined SVC-TCSC controller to enhance power system loadability

机译:组合式SVC-TCSC控制器的最佳位置和控制,可增强电力系统的负载能力

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摘要

This paper presents a flexible strategy using combined differential evolution (DE) and adaptive particle swarm optimization to enhance the system loadability considering all power system security. The proposed strategy has been successfully adapted and applied for solving the multi objective system loadability in coordination with total power loss and total voltage deviation. Two well known FACTS devices, static VAR compensator (SVC) and thyristor controlled compensator (TCSC) are coordinated and installed at optimized location. The proposed algorithm optimizes simultaneously a combined control variables, active power generations, voltage generators, tap transformer, the reactive power controlled by the shunt SVC compensator in coordination with the active power controlled by the series TCSC controller to maximize the system loadability. The proposed approach has been examined and applied to the IEEE 30-Bus. Simulation results compared to the standard PSO and other recent methods confirm the effectiveness of this hybrid variant.
机译:考虑到所有电力系统的安全性,本文提出了一种结合差分演化(DE)和自适应粒子群优化的灵活策略来增强系统负载能力。所提出的策略已经成功地调整并应用于解决与总功率损耗和总电压偏差相协调的多目标系统负载能力。两个众所周知的FACTS设备,静态VAR补偿器(SVC)和晶闸管控制补偿器(TCSC)进行了协调,并安装在最佳位置。所提出的算法同时优化组合控制变量,有功功率生成,电压发生器,抽头变压器,由并联SVC补偿器控制的无功功率以及由TCSC串联控制器控制的有功功率,以最大化系统负载能力。已对提议的方法进行了研究,并将其应用于IEEE 30总线。与标准PSO和其他最新方法相比,仿真结果证实了该混合型变体的有效性。

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