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Enhanced AC voltage and frequency control on offshore MMC station for wind farm

机译:海上风电场MMC站的增强型交流电压和频率控制

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摘要

For HVDC transmission systems based on modular multilevel converter (MMC) for connecting large offshore wind farms, the offshore AC voltage is regulated by the offshore MMC station and stable offshore AC voltage and frequency are important for the stable wind power generation and transmission. This paper proposes an enhanced AC voltage and frequency control strategy of the offshore MMC for wind farm integration, where an additional frequency loop is used to improve its AC voltage and frequency controllability. The proposed scheme considers the working principle of the phase locked loop (PLL) where the measured q-axis voltage drives the frequency output for the generated AC voltage. Thus, the output of the proposed frequency loop sets the q-axis voltage reference and feeds to the AC voltage loop to regulate the offshore AC frequency. Compared to conventional approach where no frequency loop is used and the converter simply produces the output as per the offline phase information, the proposed strategy can tightly control the AC voltage of the offshore network, which contributes to a stable transmission of the offshore wind energy. Simulation results in normal operation and during symmetrical fault confirm the feasibility of the proposed control scheme.
机译:对于用于连接大型海上风电场的基于模块化多电平转换器(MMC)的HVDC输电系统,海上AC电压由海上MMC站进行调节,稳定的海上AC电压和频率对于稳定的风力发电和输电至关重要。本文针对海上风电场集成提出了一种增强型海上MMC的交流电压和频率控制策略,其中使用了附加的频率环路来改善其交流电压和频率可控性。提出的方案考虑了锁相环(PLL)的工作原理,其中测得的q轴电压驱动生成的AC电压的频率输出。因此,建议的频率回路的输出设置q轴参考电压,并馈入AC电压回路以调节海上AC频率。与不使用频率环路且转换器仅根据离线相位信息简单地产生输出的常规方法相比,所提出的策略可以严格控制离岸网络的交流电压,从而有助于稳定传输离岸风能。在正常操作和对称故障期间的仿真结果证实了所提出的控制方案的可行性。

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