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Review of dc–dc converters for multi-terminal HVDC transmission networks

机译:用于多端子HVDC传输网络的DC-DC转换器的回顾

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This study presents a comprehensive review of high-power dc-dc converters for high-voltage direct current (HVDC) transmission systems, with emphasis on the most promising topologies from established and emerging dc-dc converters. In addition, it highlights the key challenges of dc-dc converter scalability to HVDC applications, and narrows down the desired features for high-voltage dc-dc converters, considering both device and system perspectives. Attributes and limitations of each dc-dc converter considered in this study are explained in detail and supported by time-domain simulations. It is found that the front-to-front quasi-two-level operated modular multilevel converter, transition arm modular converter and controlled transition bridge converter offer the best solutions for high-voltage dc-dc converters that do not compromise galvanic isolation and prevention of dc fault propagation within the dc network. Apart from dc fault response, the MMC dc auto transformer and the transformerless hybrid cascaded two-level converter offer the most efficient solutions for tapping and dc voltage matching of multi-terminal HVDC networks.
机译:这项研究对用于高压直流(HVDC)传输系统的高功率DC-DC转换器进行了全面的综述,重点是已建立和新兴的DC-DC转换器的最有前途的拓扑。此外,它突出了DC-DC转换器可扩展到HVDC应用的关键挑战,并从设备和系统角度考虑,缩小了高压DC-DC转换器的所需功能。本研究中考虑的每个DC-DC转换器的属性和局限性都得到了详细说明,并得到了时域仿真的支持。我们发现,从前到前的准两电平操作的模块化多电平转换器,过渡臂模块化转换器和受控过渡桥式转换器为高压DC-DC转换器提供了最佳的解决方案,这些解决方案不会影响电流隔离和防止电流隔离。直流故障在直流网络中的传播。除直流故障响应外,MMC直流自动变压器和无变压器混合级联两电平转换器为多端子HVDC网络的抽头和直流电压匹配提供了最有效的解决方案。

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