Magnetic Characteristics and Excess Eddy Current Losses

Yu Zhang, M. Cheng, P. Pillay
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引用次数: 24

Abstract

To study the fundamental essence of excess losses and to achieve an accurate core loss separation formula, a dynamic finite element model for the non-linear hysteresis loop of laminations has been established. In the model, Maxwell's Equations are solved for the hysteresis character in the magnetic lamination, using the Galerkin finite element method, where the hysteresis is represented by an energetic hysteresis model. Based on the simulation results, the magnetic characteristics, skin effect, time delay and magnetic field distribution are discussed. Then core losses, especially excess losses, affected by the magnetic characteristics are carefully examined. It is concluded that excess current losses are due to the non-uniform magnetic field distribution resulting from the skin effect and the non-linear diffusion of magnetic flux from the boundary to the inside of the lamination.
磁特性和过量涡流损耗
为了研究过量损耗的基本性质,获得准确的堆芯损耗分离公式,建立了叠片非线性滞回线的动态有限元模型。该模型采用Galerkin有限元法求解磁层合中磁滞特性的麦克斯韦方程组,其中磁滞特性用能量磁滞模型表示。在仿真结果的基础上,讨论了磁特性、集肤效应、时间延迟和磁场分布。然后仔细检查磁芯损耗,特别是受磁特性影响的过量损耗。结果表明,由于趋肤效应导致的磁场分布不均匀,以及磁通从层膜边界向层膜内部的非线性扩散是造成电流损耗过大的主要原因。
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