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Winding Inductance Estimations in Air-Cored Resonant Induction Machines

机译:空芯谐振感应电机的绕组电感估计

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In air-cored machines, there is no magnetic core so the fields produced by the windings are truly 3D in nature, and therefore the end parts of the winding contribute to the torque production. As a result, in the electromagnetic modelling of air-cored machines, the 3D inductance calculations become a key problem. This paper proposes a general and computationally-fast method to calculate the 3D winding inductances in air-cored induction machines. The phase winding self and mutual inductances are derived by collecting the contributions from the coil self and coil-to-coil mutual inductances which in turn are calculated by breaking down the real coils into straight segments and using closed-form expressions. Expressions for three-phase self and magnetizing inductances used in the equivalent circuit are also presented. Good approximations of the calculated results are confirmed in the validation against 3D finite element analysis.
机译:在空心电机中,没有磁芯,因此绕组产生的磁场实际上是3D的,因此绕组的端部有助于产生转矩。结果,在空心机器的电磁建模中,3D电感计算成为关键问题。本文提出了一种通用且计算速度快的方法来计算空心感应电机中的3D绕组电感。相绕组的自感和互感是通过收集来自线圈自感和线圈与线圈的互感的贡献而得出的,而反作用是通过将实际线圈分解为直线段并使用闭式表达式来计算的。还给出了等效电路中使用的三相自感和励磁电感的表达式。在针对3D有限元分析的验证中确认了计算结果的良好近似性。

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