Predictive control of a cascade asymmetric multilevel converter with split redundant states

S. Verne, S. González, M. Valla
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引用次数: 2

Abstract

This work presents a control strategy for the cascade asymmetric multilevel converter (CAMC). The analysis of the switching states of the topology is perfomed. A new voltage ratio for the phase capacitor, which splits redundant states and expands the number of levels from five to seven, is proposed. This improves the harmonic profile of the output voltage without additional switching devices. A Finite-states model predictive controller (FS-MPC) that uses simple dynamic models, jointly with properly defined cost functions performs the regulation of the internal voltages of the converter (phase capacitors and DC bus capacitors) and the line currents of a three phase load.
具有分裂冗余状态的级联非对称多电平变换器的预测控制
提出了一种串级非对称多电平变换器(CAMC)的控制策略。对拓扑的切换状态进行分析。提出了一种新的相位电容电压比,它可以分离冗余状态,并将电平数从5级扩展到7级。这改善了输出电压的谐波分布,而无需额外的开关器件。有限状态模型预测控制器(FS-MPC)使用简单的动态模型,结合适当定义的成本函数来调节变换器(相电容和直流母线电容)的内部电压和三相负载的线路电流。
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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