Low-Order Dynamic Magnetic Equivalent Circuits of Saturated Steel Laminations

A. Davoudi, A. Khaligh, M. Amrhein, P. Chapman, J. Jatskevich
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引用次数: 4

Abstract

Physics-based modeling of laminated magnetic devices accurately represents underlying dynamic characteristics. However, these models are hard to formulate, oversimplified with crude approximations, and computationally intensive. In this paper, a high-fidelity magnetic equivalent circuit of steel lamination is set forth based on geometrical and material data. The nonlinearity imposed by saturation is also considered. Automated linear and nonlinear order-reduction techniques are introduced to mathematically extract the essential system dynamics in the desired bandwidth, thus preserving both accuracy and computational efficiency. The resulting reduced-order system is validated with hardware measurements and full-order simulation in both time and frequency domains.
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饱和钢片的低阶动态磁等效电路
基于物理的层压磁性器件建模准确地反映了潜在的动态特性。然而,这些模型难以表述,使用粗糙的近似值过于简化,并且计算量很大。本文提出了一种基于几何和材料数据的高保真钢层合磁等效电路。文中还考虑了饱和引起的非线性。引入自动化线性和非线性降阶技术,从数学上提取所需带宽内的基本系统动力学,从而保持准确性和计算效率。通过硬件测量和时域和频域全阶仿真验证了所得到的降阶系统。
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