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Parameter design and operating zone of hybrid cascaded multilevel converter under asymmetrical square-wave modulation method of the director switch

机译:导向开关非对称方波调制方式下混合级联多电平变换器的参数设计和工作区

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摘要

Hybrid cascaded multilevel converter (HCMC) is a newly developed modular multilevel converter (MMC) with DC fault isolation capability. It is consisted of wave-shaping circuit (WSC) and direct switch (DS). This study studies the parameter design and operating zone of HCMC employing asymmetrical square-wave modulation at the DS. Analytical method of determining the asymmetrical component is derived through the energy balancing between AC side and DC side. Method of determining the required additional full-bridge cells is then deduced. By analysing the energy fluctuation flowing through the WSC, method of dimensioning the cell capacitors is proposed. Size of cell capacitance and insulated gate bipolar transistor current ratings for HCMC and traditional half-bridge MMC are compared. Feasible operating zone of the HCMC is studied and the overall design process of HCMC is summarised. Semiconductor cost, cell capacitance and arm inductance of HCMC and other DC fault tolerant MMC topologies are compared. It is shown that HCMC is able to isolate DC fault current with significantly lower cell capacitance, lower number of power semiconductors and no arm inductance compared with other MMC topologies. Detailed simulations on PSCAD/EMTDC confirmed the theoretical studies.
机译:混合级联多电平转换器(HCMC)是新开发的具有直流故障隔离功能的模块化多电平转换器(MMC)。它由整形电路(WSC)和直接开关(DS)组成。本研究研究了在DS处采用非对称方波调制的HCMC的参数设计和工作区。通过交流侧和直流侧之间的能量平衡,得出确定不对称分量的分析方法。然后推导确定所需的附加全桥单元的方法。通过分析流经WSC的能量波动,提出了确定单元电容器尺寸的方法。比较了HCMC和传统半桥MMC的单元电容大小和绝缘栅双极晶体管额定电流。研究了HCMC的可行工作区,并对HCMC的总体设计过程进行了总结。比较了HCMC和其他DC容错MMC拓扑的半导体成本,电池电容和臂电感。结果表明,与其他MMC拓扑相比,HCMC能够以更低的单元电容,更少的功率半导体数量和无臂电感的方式隔离DC故障电流。 PSCAD / EMTDC上的详细仿真证实了理论研究。

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