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Virtual Submodule Predictive Control method for Power Electronic Transformer based on MMC Structure

机译:基于MMC结构的电力电子变压器虚拟子模块预测控制方法

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In order to achieve flexible and efficient operation of intelligent power distribution, solving the problems of traditional distribution transformer such as large volume and weight, easy to generate harmonics when overload, and need supporting protection equipment to protect it when failure, etc. We propose a power electronic transformer structure based on modular multilevel converter (MMC). Firstly, we consider the multi-dimensional control target of MMC converter to establish a mathematical model. Then a virtual submodule predictive control method is proposed. The method introduces the concept of virtual submodule to realize the optimal switching state rapid mapping and reduce the switching loss of MMC. Finally, the experimental results show that the mmc-based power electronic transformer has excellent dynamic steady-state performance and can effectively overcome the high loss of traditional predictive control.
机译:为了实现智能配电的灵活高效运行,解决了传统配电变压器体积大,重量大,过载时容易产生谐波,故障时需要配套的保护设备等问题。基于模块化多电平转换器(MMC)的电力电子变压器结构。首先,考虑MMC变换器的多维控制目标,建立数学模型。然后提出了一种虚拟子模块预测控制方法。该方法引入了虚拟子模块的概念,以实现最优的开关状态快速映射,并降低了MMC的开关损耗。最后,实验结果表明,基于mmc的电力电子变压器具有出色的动态稳态性能,可以有效克服传统预测控制的高损耗。

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