A Supplementary Frequency-Voltage Controller for Improving the Stability of MMC-HVDC Connected Weak Receiving Power Grid

Yansheng Zou, K. Xiao, Zhen Wang, Guangyuan Yang, Ning Liang, Longlong Deng
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Abstract

The active power and reactive power of modular multilevel converter based HVDC (MMC-HVDC) can be decoupled independently, and can be rapidly controlled. Based on this characteristic, a supplementary frequency-voltage controller (SFVC) is designed to improve the frequency and voltage stability of MMC-HVDC connected to the weak receiving system. A detailed electromagnetic transient model is built in PSCAD. The simulation results of different disturbance locations and time durations show that the SFVC can quickly restore the frequency and voltage stability of the receiving system. The effectiveness and superiority of the proposed SFVC are proved.
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一种提高MMC-HVDC连接弱接收电网稳定性的频率电压辅助控制器
基于模块化多电平变换器的HVDC (MMC-HVDC)的有功功率和无功功率可以独立解耦,并且可以快速控制。基于这一特点,设计了一种辅助频率电压控制器(SFVC),以提高与弱接收系统连接的MMC-HVDC的频率和电压稳定性。在PSCAD中建立了详细的电磁瞬变模型。不同干扰位置和时间的仿真结果表明,SFVC能快速恢复接收系统的频率和电压稳定。验证了该方法的有效性和优越性。
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