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Magnetic circuit modelling of transformer core induction – resolution and accuracy

机译:变压器铁芯感应的磁路建模-分辨率和精度

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摘要

As a tool for optimisation of transformer cores, numerical modelling is used to estimate local induction distributions. Compared to finite element method (FEM), the magnetic circuit modelling (MACC) uses much lower amounts of elements which raises questions of resolution and accuracy. This study compares MACC models of different resolutions, two flux paths (2FP) and four paths (4FP). Both are characterised by low computing times. The low resolution of 2FP offers compact information about global flux distributions, as a function of modified core geometry or material. The increased resolution of 4FP favours the assessment of regional concentration of rotational and circular magnetisation. A rough comparison with FEM illustrates that quantitative FEM studies of such mechanisms are impossible without specific post-processing. With respect to the overall accuracy of MACC, it is not determined by the number of elements but on the accuracy of geometrical assumptions and allocated permeability functions. For the transverse direction and overlap regions, the corresponding accuracy of related terms may be close to 10%, due to product tolerance or mechanical stress. Both high meshing densities and low approximation values are of academic nature. The attractiveness of modelling is not given by accuracy, but by revealing complex distributions with good approximation of instantaneous data.
机译:作为优化变压器铁芯的工具,数值模型用于估计局部感应分布。与有限元方法(FEM)相比,磁路建模(MACC)使用的元素数量少得多,这引起了分辨率和准确性的问题。这项研究比较了不同分辨率,两个通量路径(2FP)和四个路径(4FP)的MACC模型。两者都具有计算时间短的特点。 2FP的低分辨率提供了有关总通量分布的紧凑信息,这些信息是修改后的磁芯几何形状或材料的函数。 4FP分辨率的提高有利于评估旋转和圆形磁化的区域浓度。与FEM的粗略比较表明,如果没有特定的后处理,则无法对此类机制进行定量FEM研究。关于MACC的整体精度,它不是由元素数量决定的,而是由几何假设和分配的渗透率函数的准确性决定的。对于横向和重叠区域,由于产品公差或机械应力,相关术语的相应精度可能接近10%。高啮合密度和低近似值均具有学术性质。建模的吸引力不是由准确性给出的,而是由揭示具有良好近似瞬时数据的复杂分布来给出的。

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