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Review of hybrid HVDC systems combining line communicated converter and voltage source converter

机译:Hybrid HVDC系统的回顾结合了线路通信转换器和电压源转换器

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Hybrid HVDC system, which consists of the advantages of line commutated converter (LCC) and voltage source converter (VSC), is an emerging power transmission system. This paper presents a review of four LCC-VSC hybrid HVDC topologies. The first topology is the pole-hybrid HVDC system, in which the LCC and VSC form the positive- and negative-pole respectively. The second one is the terminal-hybrid HVDC system; in this topology one terminal adopts LCC and the other terminal adopts VSC. The series converter-hybrid HVDC system is the third topology wherein each terminal is formed by LCC and VSC in series. The fourth hybrid topology under consideration is a parallel converter-hybrid HVDC system with LCC and VSC connected in parallel in each terminal. The main contribution of this paper is a comprehensive analysis and comparison of the four mentioned hybrid topologies in terms of PQ operating zone, power flow reversal method, and DC fault ride-through strategy.
机译:混合HVDC系统,包括线路换向转换器(LCC)和电压源转换器(VSC)的优点,是一种新兴电力传输系统。 本文介绍了四种LCC-VSC混合HVDC拓扑的综述。 第一个拓扑是极其混合HVDC系统,其中LCC和VSC分别形成正极和负极。 第二个是终端混合HVDC系统; 在该拓扑中,一个终端采用LCC,另一个终端采用VSC。 该系列转换器 - 混合HVDC系统是第三拓扑,其中每个终端由LCC和VSC串联形成。 所考虑的第四混合拓扑是并行转换器 - 混合HVDC系统,其中LCC和VSC在每个终端中并联连接。 本文的主要贡献是在PQ操作区,电流反转方法和直流故障策略方面的四个提到的混合拓扑的全面分析和比较。

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