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Static voltage balance method of CDSM-MMC based on power supply control

机译:基于电源控制的CDSM-MMC静态电压平衡方法

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Recently, the clamp double sub-module (CDSM) topology with its DC fault clearance ability has become more attractive for use in the modular multilevel converter (MMC)-based high-voltage DC transmission systems. However, the capacitor voltage imbalance caused by the discreteness of the device parameters during the uncontrolled pre-charging process seriously affects the system's safe start-up. To solve this problem, this study provides a novel CDSM-MMC capacitor static voltage balance method. Since the power supplies obtaining energy from the CDSM capacitors greatly influence the static voltage balance, the power supply input current is chosen as the control variable. On the basis of the control signals generated by the voltage balance algorithm, the control of the CDSM power supply input currents makes the arm energy be an average distribution in the CDSM capacitors. This method can replace the capacitor equalising resistors of CDSM to achieve capacitor voltage balance and can reduce the CDSM-MMC's losses. The method requires no additional circuits, and the control strategy is simple. Moreover, the method can apply to the static voltage balance control of other SM topologies with two capacitors. An arm cascaded with two CDSMs is tested and the results show the effectiveness of the proposed method.
机译:最近,钳位双子模块(CDSM)拓扑结构与其直流故障功能变得更具吸引力,适用于模块化多电平转换器(MMC)的高压直流传输系统。然而,由于在不受控制的预充电过程中,由设备参数的离散引起的电容器电压不平衡严重影响系统的安全启动。为了解决这个问题,本研究提供了一种新型CDSM-MMC电容静态电压平衡方法。由于电源从CDSM电容获得能量极大地影响静态电压平衡,因此选择电源输入电流作为控制变量。在由电压平衡算法产生的控制信号的基础上,CDSM电源输入电流的控制使得臂能量是CDSM电容器中的平均分布。该方法可以更换CDSM的电容均衡电阻,以实现电容器电压平衡,并且可以降低CDSM-MMC的损耗。该方法不需要额外的电路,并且控制策略很简单。此外,该方法可以应用于具有两个电容器的其他SM拓扑的静态电压平衡控制。测试有两个CDSMS级联的臂,结果表明了该方法的有效性。

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