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New method for fast coupled magnetic field-circuit simulation of power transformers based on a semi-analytical approach

机译:基于半分析方法的电力变压器快速耦合磁场电路仿真的新方法

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A novel mesh-free methodology for the coupled magnetic field-circuit simulation of power transformers is presented in this paper. The proposed methodology employs equivalent models for the conductors and the iron core, which are based on the field produced by elementary geometric configurations and boundary conditions derived from Ampere's and Faraday's laws. Power losses in the windings due to circulating currents are calculated with the proposed method and the Finite Element Method (FEM). A 25 MVA transformer is investigated as a case study and the effect of the conductor connections within the windings is considered through its incidence matrix. The windings losses obtained by applying the proposed methodology are compared with the losses estimated from the short circuit test showing an excellent agreement. The computational performance is also compared with FEM. It has been found that the proposed method is about 9 times faster than FEM retaining the level of precision required for transformer design purposes.
机译:本文提出了一种用于电力变压器耦合磁场电路模拟的新型网状方法。所提出的方法采用了导体和铁芯等效模型,其基于由基本几何配置和源自安培和法拉第法律的边界条件产生的领域。由于所提出的方法和有限元方法(FEM)计算由于循环电流引起的绕组中的功率损耗。研究了25个MVA变压器作为案例研究,通过其入射基质考虑绕组内导体连接的效果。将通过应用提出的方法获得的绕组损耗与从短路测试估计的损耗进行了比较,显示出很好的协议。计算性能也与FEM进行比较。已经发现,所提出的方法比FEM快9倍,保留变压器设计目的所需的精度水平。

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