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Theoretical analysis and control of the modular multilevel cascade converter based on double-star chopper-cells (MMCC-DSCC)

机译:基于双星斩波单元(MMCC-DSCC)的模块化多级级联变换器的理论分析与控制

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This paper presents the modular multilevel cascade converter based on double-star chopper-cells (MMCC-DSCC), which is intended for installation on the 6.6-kV Japanese industrial and utility distribution systems without using line-frequency transformers. The converter is characterized by an arm structure based on the module consisting of cascade connection of multiple bidirectional PWM chopper-cells and floating dc capacitors per arm. This arm structure requires voltage-balancing control for all the chopper-cells. However, the voltage control combining averaging- with individual-balancing controls imposes certain limitations on operating conditions. This paper proposes an arm-balancing control to achieve voltage balancing in all the operating conditions. The validity of the arm-balancing control as well as the theory developed in this paper is confirmed by computer simulation.
机译:本文介绍了基于双星斩波电池(MMCC-DSCC)的模块化多级级联转换器,旨在安装在6.6-kV日本工业和公用事业配送系统上,而无需使用线频变压器。转换器的特征在于,基于模块的臂结构,该模块由多个双向PWM斩波器电池的级联连接组成,每个臂的浮动DC电容器组成。该臂结构需要对所有斩波电池的电压平衡控制。然而,与单独的平衡控制相结合的电压控制对操作条件施加了某些限制。本文提出了一个ARM平衡控制,实现了所有操作条件中的电压平衡。通过计算机仿真确认了ARM平衡控制的有效性以及本文开发的理论。

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