首页> 外文会议>2010 IEEE International Conference on Power and Energy >Thyristor Controlled Series Compensator planning using Evolutionary Programming for transmission loss minimization for system under contingencies
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Thyristor Controlled Series Compensator planning using Evolutionary Programming for transmission loss minimization for system under contingencies

机译:晶闸管控制的串联补偿器规划,使用演化编程来最小化系统中的意外情况下的传输损耗

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The increment of power demand can cause a rapid reduction in voltage profile that can disrupt system stability leading to potential failure on the entire system as the system has to work under a stressed condition. Thus, the Flexible AC Transmission System (FACTS) are integrated in power system to control the power flow in specific lines and improve the security of transmission line. This paper proposes a static voltage stability index (SVSI) for placement of Thyristor Controlled Series Compensator (TCSC) and used Evolutionary Programming (EP) techniques for optimal sizing of TCSC used for system under contingencies. The objective of the study is to minimize the total real power losses, and at the same time monitoring the voltage profile along with the installation cost. Critical contingency cases have been used to decide optimal sizing for the placement of TCSC. The TCSC devices are installed in the system in order to enhance the system security; performed on the IEEE 30-bus RTS for several loading conditions. The simulations results are compared with those obtained from the Artificial Immune System (AIS) technique in the attempt to highlight its merit.
机译:功率需求的增加可能会导致电压曲线的快速降低,这可能会破坏系统的稳定性,导致整个系统潜在的故障,因为系统必须在压力条件下工作。因此,柔性交流输电系统(FACTS)被集成在电力系统中,以控制特定线路中的潮流,并提高输电线路的安全性。本文提出了一种用于晶闸管控制串联补偿器(TCSC)放置的静态电压稳定性指标(SVSI),并使用进化编程(EP)技术来优化在突发情况下用于系统的TCSC的最佳尺寸。该研究的目的是使总的有功功率损耗最小,并同时监视电压曲线和安装成本。紧急情况已被用于决定TCSC放置的最佳尺寸。 TCSC设备已安装在系统中,以增强系统安全性;在几种负载条件下,在IEEE 30总线RTS上执行。将模拟结果与从人工免疫系统(AIS)技术获得的结果进行比较,以突出其优点。

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