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A Delta-Channel Modular Multilevel Converter for Zero/Low-Fundamental-Frequency Operation

机译:用于零/低基频操作的增量通道模块化多电平转换器

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摘要

This paper proposes a delta-channel modular multilevel converter (MMC). It aims to overcome the issues of the conventional MMC during zero/low fundamental frequency operation. The proposed converter is characterized by the cross connection of both the upper and the lower three arms through two sets of delta-channel branches. These delta-channel branches timely redistribute power among three phase legs, leading to the minimized submodule capacitor voltage fluctuations, even at zero/low fundamental frequency operation. The inner power balancing through physical channels makes the converter inject no common-mode voltage. A 4160-V, 1-MW simulation model is performed in MATLAB/SIMULINK, and a 208-V, 5-kW experimental setup is constructed in the laboratory. Both the simulation and experimental results verify the feasibility of the proposal.
机译:本文提出了一种增量通道模块化多电平转换器(MMC)。其目的在于克服传统MMC在零/低基频操作期间的问题。所提出的转换器的特征在于,上,下三个臂通过两组增量通道分支交叉连接。这些增量通道分支可在三相支路之间及时重新分配功率,即使在零/低基频操作下,也可将子模块电容器的电压波动降至最低。通过物理通道实现的内部功率平衡使转换器不会注入共模电压。在MATLAB / SIMULINK中执行了4160V,1-MW的仿真模型,并在实验室中构建了208V,5-kW的实验设置。仿真和实验结果均验证了该方案的可行性。

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