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Equivalent electromagnetic model of self-blocking MMC with DC fault isolation capability

机译:具有直流故障隔离功能的自锁式MMC的等效电磁模型

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Self-blocking MMC (SB MMC) is able to isolate DC fault current and is promising for use in overhead HVDC transmission. Each converter arm of a SB MMC is consisted of half the self-blocking sub-module (SBSM) and half the half bridge (HB) sub-module. This hybrid design achieves the DC fault isolation capability without significantly increase of the cost and power loss. The detailed electro-magnetic simulation of SB MMC with hundreds of voltage levels is time consuming. Since a SBSM can be negatively inserted, the dynamics of SB MMC are different from HB MMC under DC fault condition. The conventional equivalent models of HB MMC are not sufficient for SB MMC. To solve the above challenges, an equivalent electromagnetic model for SB MMC is proposed and verified in this paper.
机译:自闭式MMC(SB MMC)能够隔离直流故障电流,并有望用于架空HVDC传输。 SB MMC的每个转换器臂由一半的自锁子模块(SBSM)和一半的半桥(HB)子模块组成。这种混合设计可实现DC故障隔离能力,而不会显着增加成本和功率损耗。具有数百个电压电平的SB MMC的详细电磁仿真非常耗时。由于可以负插入SBSM,因此在直流故障条件下,SB MMC的动态特性与HB MMC的动态特性不同。 HB MMC的常规等效模型不足以实现SB MMC。为了解决上述挑战,本文提出并验证了SB MMC的等效电磁模型。

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