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Operational Analyses and Control Scheme of Nine-Arm Modular Multilevel Converter

机译:九臂模块化多电平变换器的运行分析与控制方案

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摘要

Nine-arm modular multilevel converter (9A-MMC) can be applied in many medium-high-voltage applications with two sets of three-phase terminals, such as medium-voltage dual-motor drives and unified power flow controller, to replace two conventional modular multilevel converters for reducing the volume and cost. This article thoroughly investigated the operational principle of 9A-MMC, and proposed a unique operational mode that the number of submodules in each arm can be a variable. The mathematical model of 9A-MMC and steady-state analyses of capacitor voltage fluctuations and circulating current were studied in this article as well. Subsequently, a complete control scheme of 9A-MMC, including capacitor voltage balancing control and circulating current suppression control is systematically presented. Finally, the simulation and experimental results verified the performance of 9A-MMC and the effectiveness of the presented control methods.
机译:九臂模块化多电平转换器(9A-MMC)可用于许多具有两套三相端子的中高压应用,例如中压双电机驱动器和统一潮流控制器,以代替传统的两种模块化多电平转换器,以减少体积和成本。本文深入研究了9A-MMC的工作原理,并提出了一种独特的工作模式,即每个臂中子模块的数量可以是可变的。本文还研究了9A-MMC的数学模型以及电容器电压波动和循环电流的稳态分析。随后,系统地提出了9A-MMC的完整控制方案,包括电容器电压平衡控制和循环电流抑制控制。最后,仿真和实验结果验证了9A-MMC的性能以及所提出的控制方法的有效性。

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