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Precise control law of MMC and its application in reducing capacitor voltage ripple by injecting circulating current

机译:MMC的精确控制律及其在通过注入循环电流减少电容器电压纹波中的应用

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摘要

Modular multilevel converter (MMC) has been a research hotspot in the past decade in the high-voltage high-power applications. The basic working principle is analyzed in depth in this paper firstly. A precise control law is deduced to control the output voltage and the circulating current directly and precisely. Different from the conventional control law, arm inductor voltages are considered in the proposed method. It is proved that in terms of eliminating the circulating current, the effect of this control law is approximately equivalent to the conventional closed loop control with circulating current suppressing controller (CCSC). Based on this control law, the operation of MMC is further analyzed and the modulation index limitation is offered when the circulating current is eliminated. Furthermore, this paper deals with reducing the capacitor voltage ripple. After comparison, the paper gives an optimized form for single-phase MMC when only second-order circulating current is injected. The analysis can be extended to three-phase MMC. Theoretical analysis and simulations verify all the conclusions.
机译:模块化多电平转换器(MMC)在过去的十年中一直是高压大功率应用中的研究热点。首先对基本工作原理进行了深入分析。推导了精确的控制律,以直接,精确地控制输出电压和循环电流。与常规控制律不同,该方法考虑了臂电感电压。事实证明,就消除循环电流而言,该控制定律的效果与采用循环电流抑制控制器(CCSC)的常规闭环控制大致相同。根据该控制定律,对MMC的工作情况进行了进一步分析,并在消除循环电流时提供了调制指数限制。此外,本文还涉及降低电容器电压纹波的问题。经过比较,本文给出了仅注入二阶循环电流时单相MMC的优化形式。该分析可以扩展到三相MMC。理论分析和仿真验证了所有结论。

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