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Analytical Computation for AC Resistance and Reactance of Electric Machine Windings in Ferromagnetic Slots

机译:铁磁槽中电机绕组的交流电阻和电抗的解析计算

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Under the effects of alternating current (AC), the resistance and reactance of electric machine windings are different from their static state. As electric machine windings usually comprise many conductors, it makes the modeling and analysis very cumbersome using the finite element method. This paper presents an analytical method for computing AC resistance and reactance of electric machine windings placed in ferromagnetic slots, which is more convenient and efficient, and could be extended to the slots with different complex structures. First, the slot is divided into a number of layers based on the concept of discretization. Then, the magnetic field governing equation is established, and the distributions of magnetic field intensity and the current density of conductors under AC conditions are solved. By Poynting's theorem, the complex power flowing into the conductors is calculated, and then the effective resistance and reactance of the windings are obtained. Finally, the deduced analytical solutions are compared with the finite element method, and the results show that they have a good agreement for both single-layer winding and the double-layer windings with current phase difference. The presented analytical model is useful for understanding the AC effects and optimization of electric machine windings placed in ferromagnetic slots.
机译:在交流电(AC)的作用下,电机绕组的电阻和电抗与其静态不同。由于电机绕组通常包含许多导体,因此使用有限元方法进行建模和分析非常麻烦。本文提出了一种计算方法,用于计算放置在铁磁槽中的电机绕组的交流电阻和电抗,该方法更加方便,有效,并且可以扩展到具有不同复杂结构的槽中。首先,根据离散化的概念将时隙划分为多个层。然后,建立了磁场控制方程,求解了交流条件下的磁场强度分布和导体的电流密度。通过Poynting定理,计算流入导体的复数功率,然后获得绕组的有效电阻和电抗。最后,将推导的解析解与有限元方法进行了比较,结果表明,它们对于具有电流相位差的单层绕组和双层绕组都具有良好的一致性。提出的分析模型对于理解交流效应和优化放置在铁磁槽中的电机绕组非常有用。

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