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Improved Modulation Strategy for Semi-Full-Bridge Submodule in Modular Multilevel Converter

机译:模块化多电平转换器中半全桥子模块的改进调制策略

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The modular multilevel converter (MMC) has become the most attractive multilevel converter for medium and high-power applications, specifically for HVDC. In each arm, the most popular and widely used SMs are half-bridge submodule (HBSM) and full-bridge submodule (FBSM). In order to make the tradeoff between power losses and the protection function of DC side short circuit, the novel semi-full-bridge submodule (SFBSM) topology and related modulation strategy which used three phase-shifted carriers were proposed. However, this modulation strategy will make different charging states between two capacitors at certain intervals in one line cycle and lead to the larger current spike. To solve this problem, in this paper, the new improved modulation strategy was proposed to make two capacitors have the same charging states all times, extremely reduce the current spike and reduce the capacitor voltage ripple. Finally, the simulation results show the effectiveness of the proposed modulation strategy in semi-full-bridge submodule.
机译:模块化多电平转换器(MMC)已成为中高功率应用(尤其是HVDC)最吸引人的多电平转换器。在每个分支中,最流行和使用最广泛的SM是半桥子模块(HBSM)和全桥子模块(FBSM)。为了在功率损耗和直流侧短路保护功能之间进行权衡,提出了使用三个相移载波的新型半全桥子模块拓扑和相关的调制策略。但是,这种调制策略将在一个线周期内以一定间隔在两个电容器之间产生不同的充电状态,并导致更大的电流尖峰。为了解决这个问题,本文提出了一种新的改进的调制策略,使两个电容器一直处于相同的充电状态,极大地减小了电流尖峰,并减小了电容器的电压纹波。最后,仿真结果表明了所提出的调制策略在半全桥子模块中的有效性。

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