mov保护串联电容器模型对系统稳定性和有效传输能力的影响

L. Jing, Xiang Zu-tao, Hou Jun-xian, Ling Ji-min, Guo Qiang
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引用次数: 5

摘要

串联电容补偿在远距离大容量输电系统中发挥着越来越重要的作用,其模型对系统稳定性研究有着重要的影响。首先,将间隙保护SC模型和线性化模型应用于机电暂态仿真中可用输电能力和系统稳定性的研究。其次,研究表明,采用间隙保护SC模型可能会产生巨大的短路电流,在此点上输电能力和系统稳定性的研究结果可能会出现偏差。最后,仿真与理论分析的对比表明,采用线性化模型能获得较为满意的结果,与SC的电磁暂态物理特性较为接近。在实际500kV SC工程中,证明了mov保护SC的线性化模型是准确有效的,可用于SC的系统稳定性研究和故障限流器的研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The impact of model for MOV-protected series capacitors on system stability and available transmission capability
Series capacitors compensation plays a more and more important role in long-distance and large-capacity transmission system, whose model has a significant impact to system stability study. Firstly, both gap protected SC model and linearized model is applied into the available power transmission capability and system stability study in electromechanical transient simulation in this paper. Secondly, it is showed that huge short-circuit current might be caused by using gap protected SC model, and the result of transmission capability and system stability study may deviate in that point. Finally, the comparison between the simulation and theoretical analysis shows that the adoption of linearized model could bring an acceptable result which is close to the electromagnetic transient physical characteristics of SC. The linearized model for MOV-Protected SC is proved to be accurate and effective in a real 500kV SC project, and is recommended in system stability study of SC, and fault current limiter.
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