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Enhanced Dynamic Voltage Balance Control of Modular Multilevel Matrix Converters with Switched Circulating Current Control

机译:具有开关循环电流控制的模块化多级矩阵转换器的增强动态电压平衡控制

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摘要

This paper proposes an enhanced dynamic voltage balance control strategy for a modular multilevel matrix converter (M3C) that alternately injects two types of circulating currents. The strategy, referred as switched circulating current control (SCCC), injects single-frequency circulating current (SFCC) to reduce the capacitor voltage fluctuation during transients, and then switches to dual-frequency circulating current (DFCC) to improve the harmonic performance during steady-state. As a result, fluctuations in the capacitor voltage are effectively reduced using the SCCC strategy when compared to solely using the DFCC injection approach. Meanwhile, current harmonics during steady-state are also substantially reduced when compared to the SFCC injection method. Simulation investigations in Matlab/Simulink demonstrate the performance and effectiveness of the proposed control strategy.
机译:本文提出了一种增强的模块化多级矩阵转换器(M3C)的动态电压平衡控制策略,其交替地注入了两种类型的循环电流。该策略称为开关循环电流控制(SCCC),注入单频循环电流(SFCC)以降低瞬态电容器电压波动,然后切换到双频循环电流(DFCC),以在稳定期间提高谐波性能-状态。结果,与单独使用DFCC注入方法相比,使用SCCC策略有效地减少电容器电压的波动。同时,与SFCC注射方法相比,稳态期间的电流谐波也显着降低。 Matlab / Simulink中的模拟调查展示了所提出的控制策略的性能和有效性。

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