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首页> 外文期刊>IEEE Transactions on Power Delivery >A New Parallel-Connected Diode-Clamped Modular Multilevel Converter With Voltage Self-Balancing
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A New Parallel-Connected Diode-Clamped Modular Multilevel Converter With Voltage Self-Balancing

机译:具有电压自平衡功能的新型并联二极管钳位模块化多电平转换器

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摘要

The modular multilevel converter (MMC or M2C) is an emerging attractive multilevel topology for medium-voltage high-power applications. The capacitor voltage balancing control and the improvement of output current rating are two challenging issues of MMC. This paper proposed a new parallel-connected diode-clamped M2C (DCM2C), in which each arm consists of two parallel-connected clusters. In this topology, the capacitor voltages can be balanced automatically without any balancing control algorithms. Theoretically, no voltage sensors are needed to measure the capacitor voltages theoretically. Thus, the control of the converter can be simplified greatly. With a simple current-sharing control, an equal current distribution can be achieved between the two clusters. Furthermore, an extended parallel-DCM2C is proposed for larger current applications, and the corresponding current-sharing control method is developed. Experimental results validated the voltage self-balancing capability of parallel-DCM2C and the effectiveness of the proposed current-sharing control.
机译:模块化多电平转换器(MMC或M2C)是一种新兴的吸引人的多电平拓扑,适用于中压大功率应用。电容器电压平衡控制和输出电流额定值的改善是MMC面临的两个挑战性问题。本文提出了一种新的并联二极管钳制的M2C(DCM2C),其中每个臂由两个并联的集群组成。在这种拓扑中,无需任何平衡控制算法即可自动平衡电容器电压。从理论上讲,理论上不需要电压传感器来测量电容器电压。因此,可以大大简化转换器的控制。通过简单的均流控制,可以在两个群集之间实现相等的电流分配。此外,针对大电流应用提出了扩展并行DCM2C,并开发了相应的电流共享控制方法。实验结果验证了并行DCM2C的电压自平衡能力以及所提出的均流控制的有效性。

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