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Leakage Flux Modeling of Medium-Voltage Phase-Shift Transformers for System-Level Simulations

机译:用于系统级仿真的中压相移变压器的漏磁通建模

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Cascaded H-Bridge converters in medium-voltage (MV) applications have all the dc link capacitors supplied from external source through a multiwinding phase-shift transformer. This type of transformers has a complex winding geometry, which leads to unbalanced leakage flux paths. The unbalance affects the dynamic behavior of the converters. This work proposes a modeling approach, which realistically captures the unbalance in the leakage flux path of phase-shift transformers, using permeance magnetic circuit. The model can be seamlessly integrated into system-level simulation of power electronic circuits. Taking advantage of the repetitive structure of the windings, the model requires very limited number of parameters, which can be easily obtained from the geometry data together with only a few experimental tests. The fidelity of the model is experimentally confirmed on a phase-shift transformer from a commercial MV drive system.
机译:中压(MV)应用中的级联H桥转换器具有所有直流链路电容器,这些电容器是通过多绕组相移变压器从外部电源提供的。这种类型的变压器具有复杂的绕组几何形状,这导致不平衡的漏磁通路径。不平衡会影响转换器的动态行为。这项工作提出了一种建模方法,该方法使用磁通磁路来实际捕获相移变压器的漏磁通路径中的不平衡。该模型可以无缝集成到电力电子电路的系统级仿真中。利用绕组的重复结构,该模型需要数量非常有限的参数,可以很容易地从几何数据中获得这些参数,并且仅需进行一些实验测试。该模型的保真度是在商用MV驱动系统的相移变压器上通过实验确定的。

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