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Application of Voltage Stability Analysis in the South Region of the Libyan Transmission Network

机译:电压稳定性分析在利比亚传输网络南部地区的应用

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In sparsely connected power systems one of the most common problems detected is reduction of power transfer capabilities between the parts of transmission network related to the voltage stability problems. This paper presents one approach to analyze these problems using voltage stability analysis of current operating conditions of Libyan power system, specifically in the South region. There is a transmission corridor consisting of two 220 kV double circuits and one 400 kV transmission line interconnecting the South region with the rest of the system. The length of the lines is over 400km and there is no local generation in this region. Different operating conditions of Libyan transmission system were studied, by utilizing voltage stability tools in PSS/E software. This analysis has shown that the maximum power transfer is significantly less than the thermal capacity of the transmission corridor. The Q-V analysis showed that the Static VAr Compensator (SVC) of 300MVAr was recommended for installation in Sebha substation and a capacitor bank of 50MVAr in GMMR2 substation. The conclusion was that the significant increase of consumer load in the South area cannot be met with the existing transfer capabilities, even with 350MVAr of static VAr compensators. New transmission capacities or power generation in this area are recommended in case of a significant increase in consumer load.
机译:在稀疏连接的电力系统中,检测到的最常见问题之一是在与电压稳定性问题相关的传输网络部分之间的功率传输能力降低。本文介绍了一种方法来分析利比亚电力系统当前运行条件的电压稳定性分析,特别是在南部地区的电压稳定性分析。存在由两个220kV双电路组成的传动走廊,以及一个400 kV传输线与南部区域与系统的其余部分互连。线的长度超过400km,该区域没有局部产生。利用PSS / E软件中的电压稳定性工具,研究了利比亚传输系统的不同操作条件。该分析表明,最大功率传输明显小于传动走廊的热容量。 Q-V分析表明,300mvar的静态VAR补偿器(SVC)建议在SEBHA变电站和GMMR2变电站中的50mVAR电容器组中安装。结论是,即使有350mV的静态VAR补偿器,南部地区消费者负荷的显着增加也无法满足。在消费者负荷大幅增加的情况下,建议使用该区域中的新传动容量或发电。

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