Study of Capacitor Placement to Improve the Voltage Profile in Contingency Conditions of the 150 kV Madura Electricity Power System

Sujito, M. Falah, M. R. Faiz
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Abstract

The contingency is a very important issue in the electricity power system security. The contingency impact can change voltage, particularly the voltage drop on the load bus. This condition can have an impact on the quality of power supplied to the load, system reliability, and system security. The solution to overcome the voltage drop is to improve the voltage profile through the injection of reactive power sources into the system. This study focuses on improving the stress profile when a contingency occurs in the electricity power system. The stabilization profile is improved by placing the capacitor in distribution and centrally on the electricity power system. Newton Raphson method is used to determine the power flow and voltage on each bus normal and contingency conditions. The results showed that the worst undervoltage impact occurred in scenario 7 where the value of the Sumenep bus voltage decreased to 132.4 kV and the value of the bus voltage of Pamekasan was 131.8 kV. the centralized capacitor placement method is carried out on the Sumenep bus with an injection of a negative power of 24.93 MVAR. the centralized capacitor placement method can increase the bus voltage profile above the standard minimum value used. the distributed capacitor placement method is carried out by measuring the reactive power on each bus Sumenep 24.93 MVAR, Sampang 29.78 MVAR, Bangkalan 50.85 MVAR, Gilitimur 67.41 MVAR. The results of the voltage profile show that the voltages of all load buses are above the standard. The voltage standard used is the Regulation of the Minister of Energy and Mineral Resources CC2.0: 2007 with a minimum voltage limit of -10%.
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马杜洛拉150千伏电力系统应急条件下电容器配置改善电压分布的研究
突发事件是电力系统安全中一个非常重要的问题。偶然性冲击可以改变电压,特别是负载母线上的电压降。这种情况会影响向负载供电的质量、系统的可靠性和系统的安全性。克服电压降的解决方案是通过向系统注入无功电源来改善电压分布。本研究的重点是改善电力系统发生意外事故时的应力分布。通过将电容器置于配电系统和电力系统的中心位置,改善了稳定剖面。采用牛顿拉弗森法确定各母线正常和应急工况下的潮流和电压。结果表明,场景7欠压冲击最严重,Sumenep母线电压降至132.4 kV, Pamekasan母线电压降至131.8 kV。在Sumenep母线上采用集中电容器布置方法,注入负功率为24.93 MVAR。集中电容器放置方法可以使母线电压曲线高于所使用的标准最小值。通过对各母线无功功率的测量,采用分布式电容器布放法,苏梅内普24.93 MVAR,三邦29.78 MVAR,邦卡兰50.85 MVAR,吉利蒂穆尔67.41 MVAR。电压分布图的结果表明,所有负载母线的电压均高于标准。使用的电压标准是能源和矿产资源部法规CC2.0: 2007,最低电压限制为-10%。
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