A hybrid HVDC converter based on MMC and diode rectifier for offshore wind farm integration

Yue Wu, Lei Zhang, Yuebin Zhou, Zongqiu Hu, Xiaobin Zhao, Qinghan Zhuang
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引用次数: 2

Abstract

Aiming at the occasion of DC transmission of offshore wind power, a new type of hybrid converter topology is proposed in which a diode rectifier is connected in parallel with the AC side of the MMC converter and the DC side is connected in series. MMC converter provides a stable voltage source for offshore wind farms and serves as power of black start. The DC side of the diode rectifier has a bypass circuit breaker and a thyristor as the starting circuit. Due to the application of diode rectifier with higher integration and MMC converter with lower DC operating voltage in this topology, this HVDC transmission system has a higher power density and lower cost, and has some certain utilities. This paper analyzes the principle of the hybrid converter, the power distribution ratio, and the start-up and steady-state control methods. Finally, the PSCAD/EMTDC simulations for the HVDC transmission system are conducted to validate the proposed hybrid converter and control strategy.
海上风电场集成中基于MMC和二极管整流器的混合直流变流器
针对海上风电直流输电的场合,提出了一种新型的混合式变流器拓扑结构,该拓扑结构将二极管整流器与MMC变流器的交流侧并联,直流侧串联。MMC变流器为海上风电场提供了稳定的电压源,并可作为黑启动电源。二极管整流器的直流侧具有旁路断路器和晶闸管作为启动电路。由于在该拓扑结构中采用了集成度较高的二极管整流器和直流工作电压较低的MMC变换器,使得该直流输电系统具有较高的功率密度和较低的成本,具有一定的实用价值。本文分析了混合变换器的工作原理、功率分配比、启动和稳态控制方法。最后,对高压直流输电系统进行了PSCAD/EMTDC仿真,验证了所提出的混合变换器和控制策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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