高压直流电网和直流电网直流变压器拓扑结构的比较和回顾

Yi Zhang, Shaolei Shi, DianguoXu, Rongfeng Yang
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引用次数: 8

摘要

由于远离负荷中心的可再生能源所占的份额越来越大,未来高压直流(HVDC)输电和中压直流(MVDC)配电将会扩大。在这种发展中,需要直流变压器来连接不同的直流电压等级或不同的直流输电线路。虽然已经提出了许多直流变压器拓扑,但从实际的角度考虑,它们确实有相对的优点和缺点,并且没有一种拓扑适合于所有场景。基于三种不同的实现场景,本文对最新的拓扑结构进行了全面的回顾,并通过时域仿真和从可转移功率、交流变压器额定功率和开关数量方面对三种不同参数的评估,突出了两种最有前途的拓扑结构的属性和局限性。
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Comparison and review of DC transformer topologies for HVDC and DC grids
Driven by the growing share of renewable energy sources that are located far from load centers, high-voltage dc (HVDC) transmission and medium-voltage dc (MVDC) distribution will be expanded in the future. DC transformer is needed to connect different dc voltage levels or different dc transmission lines in this development. Although numerous dc transformer topologies have been proposed, they do have relatively advantages and disadvantages when considering from a practical point of view, and there is not one topology that is suitable for all scenarios. Based on three different implemented scenarios, this paper provides a comprehensive review of the latest topologies, and highlights the attributes and limitations of two most promising topologies through time-domain simulations and evaluation of three different parameters in terms of transferable power, power rating of ac transformer and the number of switches.
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