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Lagrangian Model of an Isolated DC-DC Converter With a 3-Phase Medium Frequency Transformer Accounting Magnetic Cross Saturation

机译:隔离直流转换器的拉格朗日模型,具有三相中频变压器占磁交叉饱和度

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This article presents a nonlinear equivalent circuit model of an isolated dc-dc converter with a 3-phase medium frequency transformer. The model takes into account the magnetic cross saturation of the 3-phase core-type magnetic circuit. The model is suitable in detailed electromagnetic transient simulations of power systems involving isolated dc-dc converters. The model is developed using the Lagrange energy method. It involves a matrix of dynamic inductances containing a nonlinear term resulting from core magnetization and a linear term resulting from leakage flux. The model parameters are determined based on a series of magnetostatic finite element method simulations. This approach is convenient when applied to high power transformers offering a limited characterization effort, or if the transformer prototype does not exist. The experimental validation performed on a novel 3-phase MFT prototype in a 100 kW 1.2 kV 20 kHz dual active bridge converter has proved the validity of the model and model parameters. The no-load steady-state and inrush tests and the full-load test show a very good fit between the simulated and experimentally measured waveforms. The comparison with a classical simplified model neglecting magnetic cross saturation shows a significant difference in the no-load inrush test.
机译:本文介绍了具有3相介质变压器的隔离直流转换器的非线性等效电路模型。该模型考虑了3相芯型磁路的磁交叉饱和度。该模型适用于涉及隔离的DC-DC转换器的电力系统的详细电磁瞬态模拟。该模型采用拉格朗日能量方法开发。它涉及包含由核心磁化和由泄漏通​​量产生的线性术语产生的非线性术语的动态电感矩阵。基于一系列磁静电有限元方法模拟确定模型参数。当应用于提供有限的表征工作的高功率变压器时,这种方法很方便,或者如果变压器原型不存在。在100kW 1.2 kV 20kHz双极电桥转换器中对新型3相MFT原型进行的实验验证证明了模型和模型参数的有效性。空载稳态和涌入测试和全负载测试在模拟和实验测量的波形之间表示非常好。忽略磁交叉饱和度的经典简化模型的比较显示了无负载浪涌测试的显着差异。

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