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Analytical averaged loss model of half-bridge Modular Multilevel Converters

机译:半桥模块化多电平转换器的解析平均损耗模型

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Modular Multilevel Converter (MMC) is one of the most promising topology in medium- and high voltage high power application such as high-voltage dc (HVDC) transmission systems and medium voltage drives (MVD). In high power application, the semiconductor loss modelling is essential for system efficiency evaluation, thermal system design. Power loss information is also indispensable in device thermal stress and system reliability assessment. This paper proposed an averaged loss modelling method for MMC. Similar to the classical averaged model of a converter, the loss model computes the loss on a sufficiently small time interval. It averages the semiconductor conduction loss and switching loss over a switching period to get a closed-form loss expression. Compared to the equivalent current based loss model designed for HVDC in literature, the proposed method is more flexible for different submodule and different modulation method. The analytical steady-state loss model can be used to analyze MMC system loss and device thermal stress under various operation conditions. The analytical model is compared with a lookup table method in literature and verified by a low voltage MMC experiment setup. The predicted loss matches well with the simulation and experiment measurement.
机译:模块化多电平转换器(MMC)是中高压高功率应用(例如高压dc(HVDC)传输系统和中压驱动器(MVD))中最有前途的拓扑之一。在高功率应用中,半导体损耗建模对于系统效率评估,热系统设计至关重要。功率损耗信息在设备热应力和系统可靠性评估中也是必不可少的。提出了MMC的平均损耗建模方法。与转换器的经典平均模型相似,损耗模型在足够小的时间间隔内计算损耗。将开关周期内的半导体导通损耗和开关损耗取平均值,以获得闭合形式的损耗表达式。与文献中为HVDC设计的基于等效电流的损耗模型相比,该方法对于不同的子模块和不同的调制方法更加灵活。稳态稳态分析模型可用于分析各种工作条件下的MMC系统损耗和器件热应力。该分析模型与文献中的查找表方法进行了比较,并通过低压MMC实验装置进行了验证。预测的损耗与仿真和实验测量非常吻合。

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