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Frequency control capability of VSC-HVDC transmission system

机译:VSC-HVDC输电系统的频率控制能力

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High voltage direct current (HVDC) systems have been used as an effective solution to transmit power over long distances. Performance of HVDC systems has significantly improved with the emergence of voltage source converter based HVDC (VSC-HVDC). Increased controllability provides independent control of active and reactive power which facilitates controlling of voltage and frequency. This paper investigates the frequency control capability of VSC-HVDC to determine the improvement extent that VSC HVDC systems provide for the frequency recovery and system inertia. Two frequency control strategies using dc voltage and active power outer loops are investigated. The analysis is carried out using a time domain simulator, where the tie line in the Kundur test system is replaced by VSC-HVDC. Simulation results have shown that frequency control capability of VSC-HVDC dramatically improves the frequency performance, especially in isolated power systems.
机译:高压直流(HVDC)系统已被用作长距离传输功率的有效解决方案。随着基于电压源转换器的HVDC(VSC-HVDC)的出现,HVDC系统的性能已大大提高。增强的可控制性可独立控制有功功率和无功功率,从而有利于控制电压和频率。本文研究了VSC-HVDC的频率控制能力,以确定VSC HVDC系统为频率恢复和系统惯性提供的改进程度。研究了使用直流电压和有功功率外环的两种频率控制策略。使用时域仿真器进行分析,其中Kundur测试系统中的联络线被VSC-HVDC取代。仿真结果表明,VSC-HVDC的频率控制功能极大地改善了频率性能,尤其是在隔离式电源系统中。

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