Effect of Line Splitting by New Substation on 500kV Transmission Line Compensated at One End

A. A. Kusuma, Putu Agus Aditya Pramana, B. Harsono, Buyung Sofiarto Munir
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Abstract

This study is performed to determine the transient characteristic of 500kV transmission line in Java-Bali grid which is split into two segment due to construction of new substation in the middle of transmission line. The new substation is intended to increase the reliability of system to comply with load demand growth. Splitting of existing transmission line probably causes one of the segments experience over compensation, because the existing shunt reactor on the transmission line is still used to reduce the system voltage during energize and switching process. While the other transmission line segment does not require any shunt reactor based on load flow analysis that has been performed. Splitting of existing transmission line also causes only one transpose in each segment of transmission line, so it is not effective in minimizing the mutual inductive and capacitive coupling on the transmission line. The objectives of the study are ensuring the success of auto reclose scheme on each transmission line segment and minimizing the probability of equipment breakdown due to overvoltage during single phase to ground fault and open phase fault on both of transmission line segments. The study is performed by doing calculation and simulation in transient analysis application based on data in existing and future system conditions.
新建变电站分线对500kV线路一端补偿的影响
本文研究爪哇-巴厘电网500kV输电线路的暂态特性,该线路因在输电线路中间新建变电站而被分成两段。新变电站旨在提高系统的可靠性,以适应负荷需求的增长。由于在通电和开关过程中仍然使用传输线上现有的并联电抗器来降低系统电压,因此现有输电线路的分裂可能会导致其中一段经历过补偿。而其他传输线段则不需要任何基于负载流分析的并联电抗器。现有传输线的分路也只造成每段传输线的一次转置,因此不能有效地减小传输线上的相互电感和电容耦合。研究的目的是保证每一段输电线路自动合闸方案的成功实施,并使两段输电线路单相过电压对地故障和断相故障引起设备故障的概率降到最低。基于系统现有和未来状态的数据,对暂态分析应用进行了计算和仿真。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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