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A Novel Method Based on Self-Power Supply Control for Balancing Capacitor Static Voltage in MMC

机译:基于自供电控制的MMC电容器静态电压平衡新方法

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The modular multilevel converter is one of the most attractive converter topologies for high-voltage dc transmission systems, but it needs at least 10 min during the system uncontrolled precharge stage to verify the stability and reliability of submodules (SMs), making the capacitor static voltage balancing a key issue. This paper proposes a novel method based on self-power supply control for balancing capacitor static voltage. Because of the influence of self-power supplies on capacitor voltages, the method can keep the capacitor static voltage balanced by controlling the input characteristic of SMs self-power supplies. The control signals of self-power supplies have a fixed frequency and duty ratio, and they can be determined based on capacitor voltage sorting results and self-power supply output support capacitor. Compared with previous works, this method has less computation, and it does not rely on IGBTs and additional complex circuits except for the self-power supplies. This can save on the software and hardware costs. The proposed method also leads to improved equalizing resistances and reduced active power losses of the SMs. Simulations and experimental studies were conducted, and the results confirm the effectiveness of the proposed method.
机译:模块化多电平转换器是高压直流传输系统最吸引人的转换器拓扑之一,但是在系统不受控制的预充电阶段,它至少需要10分钟才能验证子模块(SM)的稳定性和可靠性,从而使电容器产生静态电压平衡关键问题。提出了一种基于自供电控制的电容静态电压平衡方法。由于自供电对电容器电压的影响,该方法可以通过控制SM自供电的输入特性来保持电容器的静态电压平衡。自供电电源的控制信号具有固定的频率和占空比,可以根据电容器电压排序结果和自供电电源输出支持电容器来确定。与以前的工作相比,该方法具有较少的计算量,除了自供电之外,它不依赖IGBT和其他复杂电路。这样可以节省软件和硬件成本。所提出的方法还导致改善的均衡电阻和减小的SM的有功功率损耗。进行了仿真和实验研究,结果证实了该方法的有效性。

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