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Voltage Balancing Control Strategy for MMC Based on NLM Algorithm

机译:基于NLM算法的MMC电压平衡控制策略

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DC/DC converters are a key part of flexible DC distribution networks and have developed rapidly in recent years. In order to expand the voltage level of the original side of the converter, reduce the disadvantages of high manufacturing cost and large unit volume, this paper studies a modular multilevel converter structure. For the new structure, an optimized double phase-shift voltage balancing control strategy is proposed. Under the double phase-shift control, the NLM algorithm is adopted for the high switching frequency of the voltage balancing control. The 5-level single-phase structure MMC simulation model is built by the simulation platform to verify the feasibility of the proposed structure and control scheme for voltage balancing, and the IGBT switching frequency is compared under the two voltage balancing control methods before and after optimization. The results show that the optimized double phase-shift control strategy can effectively reduce the number of IGBT switching and reduce the switching loss under the condition of modular multilevel converter capacitor voltage balancing.
机译:DC / DC转换器是灵活的DC配电网络的关键部分,近年来发展迅速。为了扩大转换器原边的电压电平,减少高制造成本和单位体积大的弊端,本文研究了一种模块化的多电平转换器结构。对于新结构,提出了一种优化的双相移电压平衡控制策略。在双相移控制下,电压平衡控制的高开关频率采用NLM算法。通过仿真平台建立了5级单相结构MMC仿真模型,验证了所提出的结构和电压平衡控制方案的可行性,并比较了优化前后两种电压平衡控制方法下的IGBT开关频率。 。结果表明,优化的双相移控制策略可以在模块化多电平转换器电容器电压平衡的情况下,有效减少IGBT的开关次数,降低开关损耗。

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