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Start-Up Operation of a Modular Multilevel Converter With Flying Capacitor Submodules

机译:具有飞跨电容器子模块的模块化多电平转换器的启动操作

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The three-level flying capacitor (3L-FC) submodule significantly reduces the magnitude of circulating currents, voltage ripple, and footprint size and improves the efficiency of the modular multilevel converter (MMC). Due to the above advantages, the 3L-FC submodule becomes an alternative for the conventional half-bridge submodule in the MMC. Each 3L-FC submodule consists of two floating capacitors with different nominal voltage rating. The precharging of floating capacitors without inrush current is one of the major challenges in the 3L-FC-based MMC. This paper proposes a sequence of design steps to precharge the floating capacitors in the 3L-FC-based MMC. The proposed approach is highly effective to charge the outer and inner capacitors of each 3L-FC submodule to their nominal value. The superiority of the proposed approach is verified through the MATLAB simulations and dSPACE/DS1103 experiments on a laboratory prototype of the 3L-FC-based MMC.
机译:三级飞跨电容器(3L-FC)子模块显着降低了循环电流,电压纹波和占位面积的大小,并提高了模块化多级转换器(MMC)的效率。由于上述优点,3L-FC子模块成为MMC中常规半桥子模块的替代方案。每个3L-FC子模块均包含两个具有不同额定电压等级的浮动电容器。在没有浪涌电流的情况下对浮动电容器进行预充电是基于3L-FC的MMC的主要挑战之一。本文提出了一系列设计步骤,以对基于3L-FC的MMC中的浮动电容器进行预充电。所提出的方法对于将每个3L-FC子模块的外部和内部电容器充电至其标称值非常有效。通过MATLAB仿真和基于3L-FC的MMC的实验室原型上的dSPACE / DS1103实验,验证了该方法的优越性。

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