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Thermal Modeling and Transient Behavior Analysis of a Medium-frequency High-power Transformer

机译:中频大功率变压器的热建立与瞬态行为分析

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A medium/high-power conversion system, using power electronic (PE) converter in conjunction with a medium/high-frequency transformer, has many desirable effects suitably oriented for modern power system architecture. Switching at high frequency results in lesser volume of magnetics but induces higher loss density. Thus design and characterization of a medium-frequency (MF) high-power (HP) transformer has significant ramification on its performance and application. Thermal management of a MF HP transformer is one of key aspects for its characterization. In this paper, an equivalent thermal model of a multi-layer concentrated winding is derived. Core and copper losses are carefully estimated. Thermal resistance and capacitance are accurately calculated. Time-domain response of proposed thermal network is obtained using Heun's method (Modified Euler) and validated with PLECS. Effects of temperature change on thermal properties of material and coolant (transformer oil) are also discussed. Furthermore, accuracy of said thermal network is corroborated through FEM-CFD study of a 10kW, 0.5/2.5kV, 1kHz natural oil-cooled transformer. Close agreement between analytical and simulation results is observed which substantiates proposed thermal model in terms of accuracy and efficacy of computation.
机译:使用电力电子(PE)转换器与介质/高频变压器一起使用电力电子(PE)转换器具有许多适用于现代电力系统架构的所需效果。在高频切换导致较少的磁化量,但诱导更高的损耗密度。因此,中频(MF)高功率(HP)变压器的设计和表征在其性能和应用中具有显着的分支。 MF HP变压器的热管理是其特征的关键方面之一。在本文中,推导了多层集中绕组的等效热模型。核心和铜损均仔细估计。准确计算热阻和电容。使用Heun的方法(修改欧拉)获得所提出的热网络的时域响应,并用PLEC验证。还讨论了温度变化对材料和冷却剂(变压器油)热性质的影响。此外,通过10kW,0.5 / 2.5kV,1KHz天然油冷变压器的FEM-CFD研究,所述热网络的准确性得到证实。观察到分析和仿真结果之间的密切一致,在计算的准确性和功效方面,这是提出的热模型。

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