Capacitance minimization in modular multilevel converters: Using model predictive control to inject optimal circulating currents and zero-sequence voltage

C. Townsend, R. Aguilera, P. Acuña, G. Konstantinou, J. Pou, G. Mirzaeva, G. Goodwin
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引用次数: 11

Abstract

The superior harmonic performance of the modular multilevel converter facilitates reduction in passive filtering requirements. However, in practice, any volume and weight reduction brought about by using smaller filtering components, is offset by the increase in stored capacitor energy inside the converter. This paper proposes injection of high-frequency circulating currents and zero-sequence voltages, that significantly reduce capacitor voltage ripple. This can ultimately facilitate use of smaller capacitances. Optimal reference voltages and currents are designed off-line, with a model predictive control scheme used to track the references on-line while also compensating for any disturbances introduced by the practical system.
模块化多电平变换器中的电容最小化:利用模型预测控制注入最优循环电流和零序电压
模块化多电平变换器优越的谐波性能有助于降低无源滤波要求。然而,在实践中,使用更小的滤波元件所带来的体积和重量的减少,被变换器内部存储的电容器能量的增加所抵消。本文提出了高频循环电流注入和零序电压注入,可以显著降低电容器电压纹波。这最终有助于使用更小的电容。离线设计最优参考电压和电流,使用模型预测控制方案在线跟踪参考电压,同时补偿实际系统引入的任何干扰。
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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