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A Modular Multilevel Converter With Novel Double Reverse Blocking Sub-Modules for DC Fault Current Blocking Capability

机译:具有新型双反向阻塞子模块的模块化多电平转换器,用于直流故障电流阻塞能力

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摘要

The half bridge sub-module (HBSM)-based modular multilevel converter (MMC) is widely used in high voltage direct current (HVDC) transmission systems. However, it cannot block the dc fault current due to the uncontrolled freewheeling diodes in IGBT modules. The existing sub-modules with inherent dc fault current blocking capability still suffer from large power device amounts and complex control schemes. To solve these issues, this brief proposed a novel double reverse blocking sub-module (DRBSM), which has the fewer power devices than the existing sub-modules. With the same output voltage level, DRBSM has the same dc fault current blocking capability as full bridge sub-module (FBSM) and the same control logic circuit as HBSM. In order to further reduce the amount of power devices, a hybrid MMC based on HBSM and DRBSM is also proposed and the design principle is given in detail. Two study cases are built in simulation to verify the proposed DRBSM-based MMC and hybrid MMC well.
机译:基于高压直流(HVDC)传输系统广泛应用于高压电流(HBSM)的半桥子模块(HBSM)的模块化多电平转换器(MMC)。但是,由于IGBT模块中的不受控制的续流二极管,它无法阻挡直流滤波器电流。具有固有的DC故障电流阻塞能力的现有子模块仍然遭受大功率器件量和复杂的控制方案。为了解决这些问题,本简要提出了一种新型双反向阻塞子模块(DRBSM),其具有比现有子模块更少的功率设备。具有相同的输出电压电平,DRBSM具有与全桥子模块(FBSM)相同的直流故障电流阻塞能力和与HBSM相同的控制逻辑电路。为了进一步减少功率装置的量,还提出了一种基于HBSM和DRBSM的混合MMC,并详细给出了设计原理。模拟中建立了两种研究案例,以验证所提出的基于DRBSM的MMC和Hybrid MMC。

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