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A Strategy of DC Fault Ride Through and capacitor voltage balancing for Hybrid Modular Multilevel Converter (MMC)

机译:混合模块化多电平转换器(MMC)的直流故障穿越和电容器电压平衡策略

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The structure of hybrid modular multilevel converter (MMC) combines half-bridge submodule (HBSM)s and full-bridge submodule (FBSM)s. Compared with half-bridge MMC, the hybrid topology has fault-through capability against a solid DC side fault. In contrast with full-bridge MMC, the topology saves a large amount of cost and power loss since it reduces the number of diodes and IGBTs a lot. This paper proposes an operation mode that a part of FBSMs’ outputs are positive while others’ outputs are negative. The mode is more flexible and it takes advantage of negative-level output of FBSMs which can expand the range of AC output voltage and make MMC run in loss-reduction mode. The topology maintains DC fault clearing capability only under the condition of a certain proportion of HBSMs and FBSMs. In this paper, the proportion of HBSMS and FBSMs is calculated and a new capacitor voltage balancing strategy is proposed in order to save the sort time. By building a 21-level hybrid MMC model in PSCAD/EMTDC, the simulation results demonstrate the validity of the proposed control scheme.
机译:混合模块化多电平转换器(MMC)的结构结合了半桥子模块(HBSM)和全桥子模块(FBSM)。与半桥MMC相比,混合拓扑具有针对固态DC侧故障的直通功能。与全桥MMC相比,该拓扑节省了大量成本和功率损耗,因为它大大减少了二极管和IGBT的数量。本文提出了一种操作模式,即部分FBSM的输出为正,而其他FBSM的输出为负。该模式更加灵活,并且利用了FBSM的负电平输出,可以扩大交流输出电压的范围,并使MMC在降低损耗的模式下运行。只有在一定比例的HBSM和FBSM的情况下,拓扑才能保持DC故障清除能力。本文计算了HBSMS和FBSM的比例,并提出了一种新的电容器电压平衡策略,以节省排序时间。通过在PSCAD / EMTDC中建立21级混合MMC模型,仿真结果证明了所提出控制方案的有效性。

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