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A Novel Economical Type of Four Capacitor Combined Half-Bridge Sub-Module Topology

机译:一种新颖的四电容器组合半桥子模块拓扑的经济类型

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With the rapid development of energy interconnection and power electronic devices, modular multilevel converters (MMC) are widely used in the field of high voltage direct current transmission (HVDC). The traditional half-bridge sub-module topology lacks the ability to clear the DC fault current, and the full-bridge sub-module topology has a high investment cost, some other improved topologies are difficult to both clear the DC fault current and achieve the ability to balance the capacitor voltage after the fault. Based on the half-bridge sub-module topology, this paper proposes a four-capacitor combined half-bridge sub-module (FCC-HBSM). This FCC-HBSM can not only effectively clear the DC fault current, but also self-balance the capacitor voltage after the fault. And, compared with other improved topologies, it has higher economic benefits. The single-ended MMC-HVDC is simulated by MATLAB/Simulink. The simulation results show that FCC-HBSM has a good ability to clear the DC fault current and keep the capacitor voltage balanced after the fault.
机译:随着能源互连和电力电子设备的快速发展,模块化多级转换器(MMC)广泛应用于高压直流传输(HVDC)的领域。传统的半桥子模块拓扑缺乏清除直流故障电流的能力,并且全桥子模块拓扑具有高投资成本,其他一些改进的拓扑难以清除直流故障电流并实现能够在故障后平衡电容器电压。基于半桥子模块拓扑,本文提出了一个四电容组合半桥子模块(FCC-HBSM)。该FCC-HBSM不仅可以有效地清除直流故障电流,还可以在故障后自平衡电容器电压。而且,与其他改进的拓扑相比,它具有更高的经济效益。 MATLAB / SIMULINK模拟单端MMC-HVDC。仿真结果表明,FCC-HBSM具有良好的清除直流滤波器电流的能力,并在故障后保持电容电压平衡。

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