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Dynamic Voltage Balancing Algorithm for Modular Multilevel Converter: A Unique Solution

机译:模块化多电平转换器的动态电压平衡算法:一种独特的解决方案

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摘要

The modular multilevel converter (MMC) has several submodules in cascade. To control the submodule capacitors voltage, a new generalized dynamic voltage balancing algorithm along with a simple pulse width modulator structure is proposed in this paper. With proposed pulse width modulator structure, the dynamic voltage balancing algorithm can be easily implemented with any type of carrier based pulse width modulation (including level-shifted and phase-shifted pulse width modulation) scheme without any modifications. This method does not require the sorting technique for selection of submodule capacitors voltage. The performance of the proposed voltage balancing algorithm is presented for MMC with three-level flying capacitor submodules (MMC-3L-FC). The proposed method is also applicable to the conventional two-level half bridge submodules as well. The effectiveness of the proposed voltage balancing algorithm is verified with the phase-shifted carrier-based pulse with modulation scheme. The results obtained from the MATLAB/SIMULINK simulations on 6-kV/ 2.5-MW system and the dSPACE DS1103-based laboratory prototype of 208-V/3-kVA MMC-3L-FC system are in close relationship, and thus, the proposed methodology is validated.
机译:模块化多级转换器(MMC)具有级联的几个子模块。为了控制子模块电容器的电压,本文提出了一种新的广义动态电压平衡算法以及一种简单的脉宽调制器结构。利用提出的脉冲宽度调制器结构,可以通过任何类型的基于载波的脉冲宽度调制(包括电平转换和相移脉冲宽度调制)方案轻松实现动态电压平衡算法,而无需进行任何修改。此方法不需要用于选择子模块电容器电压的分类技术。针对带有三级飞跨电容器子模块(MMC-3L-FC)的MMC,提出了所提出的电压平衡算法的性能。所提出的方法也适用于常规的两级半桥子模块。提出的电压平衡算法的有效性通过带有调制方案的基于相移载波的脉冲进行了验证。从6 kV / 2.5 MW系统的MATLAB / SIMULINK仿真获得的结果与208-V / 3-kVA MMC-3L-FC系统的基于dSPACE DS1103的实验室原型密切相关,因此,本提议方法论已得到验证。

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