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Design method for strengthening high-proportion renewable energy regional power grid using VSC-HVDC technology

机译:使用VSC-HVDC技术加强高比例可再生能源区域电网的设计方法

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This paper proposes a general design method for strengthening regional power grids with high proportion of renewable energy using voltage source converter based high voltage direct current (VSC-HVDC) technology. First, three main security and stability problems of regional power grids with high proportion of renewable energy are pointed out, which implies the necessity of the VSC-HVDC reinforcement scheme. Second, two VSC-HVDC reinforcement schemes are designed to strengthen a real high-proportion renewable energy regional power grid in China, with emphases on the determination of location and capacity of VSC stations. Third, three evaluation indexes that related to the security and stability of power grids are put forward, namely line load rate, bus voltage level and system strength of the VSC-connected terminal. Finally, the two alternative reinforcement schemes are analyzed in detail. The results show that, the two VSC-HVDC schemes can well solve the line overload problem of electromagnetic loop networks with high generation of renewable energy, and can effectively increase the voltage level of the system during the fault period. After a comprehensive evaluation, scheme 2 is slightly superior to scheme 1.
机译:本文提出了一种基于电压源换流器的高压直流电(VSC-HVDC)技术来增强可再生能源比例较高的区域电网的通用设计方法。首先,指出了可再生能源比例较高的区域电网的三个主要安全性和稳定性问题,这暗示了VSC-HVDC加固方案的必要性。其次,设计了两种VSC-HVDC加固方案,以加强中国真正的高比例可再生能源区域电网,重点是确定VSC站的位置和容量。第三,提出了与电网安全性和稳定性有关的三个评估指标,即线载率,母线电压水平和VSC连接终端的系统强度。最后,详细分析了两种替代加固方案。结果表明,两种VSC-HVDC方案都能很好地解决产生大量可再生能源的电磁环网的线路过载问题,并能在故障期间有效提高系统的电压水平。经过综合评估,方案2略优于方案1。

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