Impact of grading capacitor on transient recovery voltage due to shunt reactor de-energization for different values of current chopping

Mazyed A. Al-Tak, Mohd Fadzil Ain, O. Al-Yozbaky, Mohamad Kamarol Mohd Jamil
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Abstract

This paper investigates the impact of grading capacitors on transient recovery voltage (TRV) during shunt reactor switching in high voltage systems, considering different levels of current chopping. Shunt reactor de-energization can result in voltage surges and instability due to current chopping effects. The study utilizes simulation models using ATP-Draw software to assess the effectiveness of grading capacitors in mitigating TRV under various operating conditions as well as of using a proposed method to mitigate the excessive TRV across the circuit breaker. The findings provide valuable insights into managing TRV during shunt reactor switching, enhancing power system stability and reliability. The results obtained showed that the TRV across the circuit breaker decreased by 61.5% by using circuit modification as well as adding a grading capacitor.
分级电容器对不同斩波电流值下并联电抗器断电引起的瞬态恢复电压的影响
本文研究了分级电容器对高压系统并联电抗器切换期间瞬态恢复电压(TRV)的影响,并考虑了不同程度的电流斩波。由于电流斩波效应,并联电抗器断电会导致电压浪涌和不稳定。该研究利用 ATP-Draw 软件的仿真模型,评估了分级电容器在各种运行条件下缓解 TRV 的效果,以及使用建议的方法缓解断路器上过大 TRV 的效果。研究结果为并联电抗器切换期间的 TRV 管理提供了有价值的见解,提高了电力系统的稳定性和可靠性。研究结果表明,通过电路改造和增加分级电容器,断路器上的 TRV 降低了 61.5%。
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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