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Fault Tolerant Control of MMC with Redundant Sub-modules Based on Carrier Phase Shift Modulation

机译:基于载波移相调制的冗余子模块的MMC容错控制

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Modular multilevel converter (MMC) is regarded as one of the most promising topologies for the high-voltage high-power applications. However, reliability is one of the most important challenges for MMC which is composed of a large number of power electronics sub-modules (SMs). In order to increase the system reliability, redundant SMs are often utilized. A strategy is proposed in this paper to implement the control of MMC with redundant SMs based on the carrier phase shift modulation. A rotating sliding choice box is adopted to select the working SMs and phase displacements in operation, which enables the equal burden of each SM. The failed SMs will be deleted from the selecting options, which guarantees the fault tolerant control. Simulations and experiments based on a 5-kW downscaled MMC hardware have verified the strategy.
机译:模块化多电平转换器(MMC)被认为是高压大功率应用中最有前途的拓扑之一。然而,可靠性是MMC最重要的挑战之一,它由大量的电力电子子模块(SMS)组成。为了提高系统可靠性,通常使用冗余短信。本文提出了一种策略,以基于载波相移调制来实现利用冗余SMS对MMC的控制。采用旋转滑动选择框选择运行中的工作SMS和相位位移,这使得每个SM的负担相等。失败的SMS将从选择选项中删除,这保证了容错控制。基于5-kW俯卧的MMC硬件的仿真和实验已经验证了策略。

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