A optimization Strategy to Balance sub-Module Capacity Voltage of MMC

Wang Ye, Wu Yi, Cui Yu, Zhao Jing-wu, L. Yuhua
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Abstract

optimizing the sub-module control strategy of modular multi-level converter, especially considering the capacitor voltage fluctuation of sub-module, the second harmonic content of bridge arm circulation, the switching times of sub-module IGBT and the calculation amount of algorithm, a capacitor voltage control strategy of sub-module of modular multi-level converter is proposed. This paper expounds the contradiction between the voltage fluctuation of the sub-module capacitor, the switching times of the submodule IGBT and the computational complexity of the algorithm, then proves through theoretical analysis that there is also a non-linear relationship between the voltage fluctuation of the sub-module capacitor and the second harmonic content of the bridge arm circulating current. It is necessary to find an appropriate algorithm to achieve the optimal situation at the same time. Finally, the traditional control strategy, the control strategy proposed in other literature and the control strategy proposed in this paper are validated by dynamic model test. The experimental results show that the proposed strategy in this paper can be optimized in four aspects: voltage fluctuation of sub-module, second harmonic content in bridge arm circulation, switching times of sub-module IGBT and the computational complexity of the algorithm.
MMC子模块容量电压平衡的优化策略
对模块化多电平变换器的子模块控制策略进行了优化,特别考虑了子模块电容器电压波动、桥臂循环二次谐波含量、子模块IGBT开关次数和算法计算量,提出了模块化多电平变换器子模块电容器电压控制策略。阐述了子模块电容器电压波动与子模块IGBT开关次数和算法计算复杂度之间的矛盾,并通过理论分析证明了子模块电容器电压波动与桥臂循环电流二次谐波含量之间也存在非线性关系。同时需要找到合适的算法来达到最优的情况。最后,通过动态模型试验对传统控制策略、其他文献提出的控制策略和本文提出的控制策略进行了验证。实验结果表明,本文提出的策略可以从子模块电压波动、桥臂循环二次谐波含量、子模块IGBT开关次数和算法计算复杂度四个方面进行优化。
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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