Improved Modular Multilevel Converter with Output Voltage Boosting Capability for Medium Voltage DC Distribution System

Rahul Mishra, Kamal M. Vaghasiya, V. Agarwal
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Abstract

Numerous promising features of Medium Voltage DC Distribution System (MVDC-DS) make it highly probable that it would be extensively integrated with the future AC power grid to enhance power availability. However, issues may arise during interconnection such as voltage incompatibility between the two grids i.e. MVDC-DS and AC grid. Keeping this in mind, in this paper an Improved Modular Multilevel Converter topology (I-MMC) is considered and a novel voltage balancing algorithm (VBA) is proposed. I-MMC offers several unique features like wide range of voltage boosting capability, increased number of levels in the output voltage, low switch count and enhanced THD compared to the conventional MMC. Thus, the I-MMC ensures the interconnection of the AC and DC grids and also ensures low foot print size, high power density and low infrastructure cost. I-MMC is equally effective for applications like electrical machine drive systems, High Voltage DC (HVDC) systems, and other high voltage, high power applications. I-MMC and VBA are simulated in MATLAB/Simulink environment. Representative waveforms for a wide range of loading conditions are included to validate the theoretical claims.
中压直流配电系统中具有输出升压能力的改进型模块化多电平变换器
中压直流配电系统(MVDC-DS)具有许多具有发展前景的特性,这使得它极有可能与未来的交流电网广泛集成,以提高电力的可用性。然而,在互连过程中可能会出现问题,例如两个电网之间的电压不兼容,即MVDC-DS和交流电网。考虑到这一点,本文考虑了一种改进的模块化多电平变换器拓扑(I-MMC),并提出了一种新的电压平衡算法(VBA)。与传统的MMC相比,I-MMC提供了几个独特的功能,如宽范围的电压提升能力,增加输出电压水平,低开关计数和增强的THD。因此,I-MMC确保了交流和直流电网的互连,也确保了低占地面积,高功率密度和低基础设施成本。I-MMC同样适用于电机驱动系统、高压直流(HVDC)系统和其他高压、高功率应用。在MATLAB/Simulink环境下对I-MMC和VBA进行了仿真。包括广泛的加载条件下的代表性波形,以验证理论主张。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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