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A Study on Reclosing of Asaluyeh-Isfahan 765 kV Transmission Line Considering the Effect of Neutral Reactor in Reducing Resonant Voltages

机译:考虑中性反应器在减少谐振电压中的效果中的asaluyeh-isfahan 765 kV传输线的重新介收研究

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Shunt reactors are utilized on long transmission lines (in this case a 640km 765kV line) to reduce over voltages experienced under light load conditions. When the compensated line is opened to clear a fault, it is found that the open-phase voltage does not disappear. In some cases, a dangerous transient voltage with a resonant frequency between 30Hz and 55Hz can be seen which gradually reduces in magnitude. This over voltage can damage line connected equipments like shunt reactors and open circuit-breakers. This phenomenon is because of the trapped charges existing on transmission line during the dead time of secondary arc extinction. In case of high transient over voltages, we need additional equipments to reduce them. Normally, closing resistors are used to limit the over voltages. This solution is expensive and prone to failure. The proposed method is the usage of neutral reactors in the neutral of shunt reactors which is a cost effective solution. The technique is shown to reduce the resultant over voltages on the power system and allows for faster reclosing thus improving stability. In this research work, the investigation of a neutral reactor application is performed for transmission lines using transient simulation with appropriate models. The application of neutral reactors for reducing the resonant over voltages and reclosing over voltages during fault clearing is analyzed. The simulations are carried out by ATP/EMTP software and the advantages of using neutral reactors for Asaluyeh-Isfahan 765 kV transmission line are discussed.
机译:在长传输线上(在这种情况下为640km 765kV线),使用并联反应器,以减少在轻负载条件下经历的电压。当补偿线路打开以清除故障时,发现开相电压不会消失。在某些情况下,可以看到常谐振频率在30Hz和55Hz之间的危险瞬态电压,其逐渐降低。过电压可能会损坏线路连接的设备,如并联电抗器和开路断路器。这种现象是因为在二次灭射期间输电线上存在的捕获电荷。在高瞬态电压的情况下,我们需要额外的设备来减少它们。通常,关闭电阻用于限制过电压。该解决方案昂贵并且容易发生故障。所提出的方法是使用中性反应器的中性反应器,其是具有成本有效的溶液。该技术被示出为减少电力系统上的由此产生的电压,并允许更快地重新倾斜,从而提高稳定性。在本研究工作中,使用适当模型的瞬态模拟来执行对中性反应器应用的调查。分析了中性反应器在故障清除期间减少电压并在电压下旋转电压的施加。讨论了仿真由ATP / EMTP软件进行,并且讨论了使用中性反应器的优点。

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