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A Reverse-Blocking Hybrid Topology with DC Fault Blocking Capability of Modular Multilevel Converter

机译:具有模块化多电平转换器的DC故障阻止功能的反向阻止混合拓扑

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The occurrence of DC-side bipolar short-circuit faults in flexible DC transmission systems is a serious problem at present. In order to achieve fault clearing, an improved reverse-blocking hybrid submodule (RB-Hybrid-SM) topology of modular multilevel converter with DC-side fault current clearing capability is presented. All submodule (SM) capacitances of the proposed topology are series into the fault circuit and provide back electromotive force (back EMF) with converter valve blocking to clear the fault current. Then the fault clearing mechanism is analyzed, and the fault current analysis expression is pushed according to fault equivalent circuit. Finally, using this topology as an example, an improved reverse-blocking hybrid SM modular multilevel converter (RB-Hybrid-SM-MMC) simulation model was built in the PSCAD/EMTDC software are carried out to verify its effectiveness and feasibility. The simulation results show that the new SM topology proposed in this paper can quickly block the fault current, and always provide 2Uc back EMF during the fault blocking process.
机译:目前,柔性直流输电系统中直流侧双极短路故障的发生是一个严重的问题。为了实现故障清除,提出了具有直流侧故障电流清除能力的模块化多电平变换器的改进的反向阻塞混合子模块(RB-Hybrid-SM)拓扑。拟议拓扑的所有子模块(SM)电容都串联到故障电路中,并提供反电动势(back EMF),并带有转换阀阻塞以清除故障电流。然后分析故障清除机理,并根据故障等效电路推入故障电流分析表达式。最后,以该拓扑为例,在PSCAD / EMTDC软件中建立了改进的反向阻塞混合SM模块化多电平转换器(RB-Hybrid-SM-MMC)仿真模型,以验证其有效性和可行性。仿真结果表明,本文提出的新型SM拓扑可以快速阻断故障电流,并在故障阻断过程中始终提供2Uc反电动势。

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