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A Repetitive Control Scheme for Harmonic Suppression of Circulating Current in Modular Multilevel Converters

机译:模块化多电平变换器中循环电流谐波抑制的重复控制方案

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In a modular multilevel converter (MMC), the interaction between switching actions and fluctuating capacitor voltages of the submodules results in second- and other even-order harmonics in the circulating currents. These harmonic currents will introduce extra power loss, increase current stress of power devices, and even cause instability during transients. Traditional methods for circulating current harmonic suppression have problems such as limited harmonic rejection capability, limited application area, and complex implementation. This paper presents a plug-in repetitive control scheme to solve the problem. It combines the high dynamics of PI controller and good steady-state harmonic suppression of the repetitive controller, and minimizes the interference between the two controllers. It is suitable for multiple harmonic suppression, easy to implement, and applicable for both single-phase and three-phase MMCs. Simulation and experimental results on a single-phase MMC inverter proved the validity of the proposed control method.
机译:在模块化多电平转换器(MMC)中,子模块的开关动作和波动的电容器电压之间的相互作用会在循环电流中产生二阶和其他偶数阶谐波。这些谐波电流会引入额外的功率损耗,增加功率器件的电流应力,甚至导致瞬态过程中的不稳定。传统的循环电流谐波抑制方法存在谐波抑制能力有限,应用范围有限,实现复杂等问题。本文提出了一种插件重复控制方案来解决该问题。它结合了PI控制器的高动态特性和重复控制器的良好稳态谐波抑制,并最大程度地减小了两个控制器之间的干扰。它适用于多重谐波抑制,易于实现,并且适用于单相和三相MMC。在单相MMC逆变器上的仿真和实验结果证明了该控制方法的有效性。

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