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Design and analysis of a 35 kVA medium frequency power transformer with the nanocrystalline core material

机译:具有纳米晶核材料的35 kVA中频电力变压器的设计与分析

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Medium frequency power transformers embedded into power electronics converters are frequently encountered in many applications such as electrical transportation and renewable energy systems and power supplies. Thus, researchers have been focused on soft magnetic materials such as amorphous and nanocrystalline materials to obtain smaller and more efficient transformer designs with the improvements on manufacturing technologies of the high frequency core materials. In this study, the transformer design methodology is proposed with the finite element analysis method, and a 35 kVA medium frequency transformer with nanocrystalline core material is designed. After the sizing stage, three-dimensional model of the transformer is created with finite element analysis software, and then co-simulations of this electromagnetic transformer model with a power electronics converter circuit are performed for practical operation conditions. Furthermore, thermal behavior of the prototype transformer is determined with the thermal coupling analysis, and temperature distribution of the prototype transformer is visualized with a thermal imaging camera. The transformer efficiency, exact equivalent circuit of the transformer and flux distributions in the transformer core are obtained from these simulation studies. In addition, the prototype of the designed transformer is produced and tested. The design conditions and simulation results are validated with experimental studies. (C) 2017 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:嵌入电力电子转换器中的中频电力变压器在许多应用中经常遇到,例如电力运输,可再生能源系统和电源。因此,研究人员一直致力于软磁材料,例如非晶态和纳米晶材料,以通过改进高频芯材的制造技术来获得更小,更有效的变压器设计。在这项研究中,提出了采用有限元分析方法的变压器设计方法,并设计了一种具有纳米晶核材料的35 kVA中频变压器。在定型阶段之后,使用有限元分析软件创建变压器的三维模型,然后针对实际运行条件对该电磁变压器模型与电力电子转换器电路进行联合仿真。此外,通过热耦合分析确定了原型变压器的热性能,并使用热成像摄像机可视化了原型变压器的温度分布。从这些仿真研究中可以获得变压器效率,变压器的精确等效电路以及变压器铁心中的磁通分布。此外,还生产并测试了设计变压器的原型。通过实验研究验证了设计条件和仿真结果。 (C)2017氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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