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Comparison of Three LCC-MMC Hybrid HVDC Links Based on AC Fault Response Characteristics

机译:基于交流故障响应特性的3条LCC-MMC混合HVDC链路比较

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Combining the advantages of the line commutated converter (LCC) and the modular multilevel converter (MMC), and aiming at the projects of west-to-east power transmission in China, this paper studies three hybrid HVDC systems. Three systems include: rectifier are LCCs, inverter are half-bridge sub-module MMCs with diode in series; rectifier are LCCs, inverter are hybrid MMCs composed of half-bridge sub modules and full-bridge sub modules; rectifier are LCCs, inverter is a hybrid inverter with a LCC and half- bridge sub-module MMCs connected in series. First, this paper introduces the topologies and control modes of three hybrid HVDC systems. Then, three hybrid HVDC systems are built in PSCAD /EMTDC, and the response characteristics of AC fault at the inverter are compared and analyzed. Finally, based on the simulation results, the advantages and disadvantages of three topologies are summarized. The results show that under the receiving-end AC system fault, the response characteristics of scheme 1 are better than the other two schemes.
机译:结合线路换向转换器(LCC)和模块化多电平转换器(MMC)的优势,针对中国西电东送的项目,研究了三种混合高压直流输电系统。三种系统包括:整流器是LCC,逆变器是带有二极管的半桥子模块MMC。整流器是LCC,逆变器是由半桥子模块和全桥子模块组成的混合MMC。整流器为LCC,逆变器为混合逆变器,其中LCC和半桥子模块MMC串联连接。首先,本文介绍了三种混合HVDC系统的拓扑和控制模式。然后,在PSCAD / EMTDC中建立了三个混合HVDC系统,并对逆变器AC故障的响应特性进行了比较和分析。最后,基于仿真结果,总结了三种拓扑的优缺点。结果表明,在接收端交流系统故障下,方案1的响应特性优于其他两种方案。

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