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Full bridge MMC converter optimal design to HVDC operational requirements

机译:全桥MMC转换器针对HVDC操作要求的最佳设计

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Summary form only given. Design and operation of FB (full bridge) MMC that meets HVDC specifications are studied in this paper. Three new design parameters: the over-modulation index (kMMC), the DC modulation index (Mdc), the minimal DC voltage (Vminpu) are introduced to specify the operation of a FB MMC. Power increase and semiconductor count increase with the increase of kMMC is analyzed to understand benefits of over-modulation. The required number of submodules and the number of more-costly FB submodules for specified rated dc voltage, Vminpu and kMMC are calculated. The relationship of the submodule inserting logic and dynamics of an arm is analyzed. The submodule voltage balancing is studied and the constraints on the required number of FB submodules are deduced. The capability of over-modulation and the operation under low DC voltage with optimal submodule count are verified using EMTP simulation.
机译:仅提供摘要表格。本文研究了符合HVDC规范的FB(全桥)MMC的设计和运行。引入了三个新的设计参数:过调制指数(kMMC),直流调制指数(Mdc),最小直流电压(Vminpu),以指定FB MMC的运行。分析了随着kMMC的增加而增加的功率和半导体数量,以了解过调制的好处。计算指定的额定直流电压Vminpu和kMMC所需的子模块数量和成本更高的FB子模块数量。分析了子模块插入逻辑与手臂动力学的关系。研究了子模块的电压平衡,并得出了对所需数量的FB子模块的约束。使用EMTP仿真验证了过调制的能力以及在低直流电压下具有最佳子模块数量的操作。

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