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Controlled Transition Full-Bridge Hybrid Multilevel Converter With Chain-Links of Full-Bridge Cells

机译:具有全桥单元链链接的受控过渡全桥混合多电平转换器

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This paper proposes a controlled transition full-bridge (CTFB) hybrid multilevel converter (HMC) for medium and high voltage applications. It employs a full-bridge cell chain-link (FB-CL) between the two legs in each phase to generate multilevel bipolar output voltage. The CTFB-HMC has twice dc voltage utilization or power density of conventional converters due to the bipolar capability of its full-bridge configuration. Hence, for the same power rating and same voltage level number, its total cells per phase are quarter that in modular multilevel converter (MMC), which reduces the hardware installation volume. Also, in the proposed converter, the total device number in the conduction paths is the same as in the half-bridge MMC, leading to low conduction losses. The FB-CL current of the CTFB converter has no dc component, which offers the potential to enhance the transient response. Comparative studies between the CTFB and other multilevel topologies are carried out to clarify its main features. The modulation strategies and parameter sizing of the proposed converter are investigated using a generic case. Simulation and experimental results are used to verify the effectiveness of the proposed approach.
机译:本文提出了一种适用于中压和高压应用的受控过渡全桥(CTFB)混合多电平转换器(HMC)。它在每个相位的两个分支之间采用全桥单元链链接(FB-CL),以生成多电平双极输出电压。由于其全桥配置的双极能力,CTFB-HMC的直流电压利用率或功率密度是传统转换器的两倍。因此,对于相同的额定功率和相同的电压水平编号,其每相总电池数量是模块化多电平转换器(MMC)的四分之一,从而减少了硬件安装量。另外,在提出的转换器中,传导路径中的总器件数量与半桥MMC中的总数相同,从而导致低传导损耗。 CTFB转换器的FB-CL电流没有直流分量,这有可能增强瞬态响应。 CTFB与其他多层次拓扑之间进行了比较研究,以阐明其主要特征。在一般情况下研究了所提出的转换器的调制策略和参数大小。仿真和实验结果用于验证所提方法的有效性。

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