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Use of Shunt Compensator to Enhance Power Transfer Capability Limit, Case: Jawa Bali 500kV System Grid

机译:使用分流器补偿器来增强电力传输能力限制,案例:Jawa Bali 500kV系统网格

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Jawa Bali 500kV power system grid comprises of two large areas which are connected by two double circuit transmission lines. However, under high power transfer from east to west area on October 19, 2012 resulted in Jawa Bali power system experienced voltage drop until 0.86 pu in west area. Very low voltage may lead to voltage stability phenomenon. This paper would analyze maximum power transfer capability without and with introducing shunt compensators. Static analysis using P-V Curve method is aimed to assess voltage stability phenomenon. P-V Curve corresponds with total active power transfer (P) of two transmission lines connecting west and east area compared to voltage system (V) behavior in west area. The study also includes investigation of power transfer capability limit enhancement with use of shunt compensator compare to initial condition. Various options of shunt compensators considered are MSCs, SVC, and STATCOM. Power Transfer Stability Index and Q-V Curve sensitivity were considered to acquire list ranking location of shunt compensator. Based on static voltage analyses result, use of shunt compensators was proven to increase power transfer limit.
机译:Jawa Bali 500kV电源系统网格包括两个大面积,通过两个双电路传输线连接。然而,2012年10月19日从东到西区的高电力转移导致Jawa Bali电力系统经历了电压降至西区0.86普。非常低的电压可能导致电压稳定性现象。本文将分析最大功率传输能力,而不是引入分流补偿器。使用P-V曲线法的静态分析旨在评估电压稳定性现象。 P-V曲线对应于连接西部和东部地区的两个传输线的总有效电力传输(P)与西区的电压系统(v)行为相比。该研究还包括使用分流补偿器比较初始条件来调查电力传递能力限制增强。考虑的各种分流器补偿器选择是MSCS,SVC和Statcom。电力传递稳定性指数和Q-V曲线灵敏度被认为是在分流器补偿器的列表排名位置获取。基于静电电压分析结果,经过证明使用分流器补偿器以提高功率转移极限。

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