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Computationally efficient 3D FEM rotor eddy-current loss calculation for permanent magnet synchronous machines

机译:永磁同步电机的高效计算3D FEM转子涡流损耗计算

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Rotor eddy-current loss calculation by means of 3D finite element analysis is often necessary during later design stages of a new machine, but can still be very time-consuming. This paper proposes two FEM-based methods that potentially require less time to solve than a transient model of the complete machine geometry and are relatively straightforward to implement. Both methods apply an airgap boundary condition obtained from a limited number of solutions of a full 3D model, to a model containing only the rotor geometry. An important property of both methods is that they can account for shielding effects in the rotor. The performance of the methods in terms of accuracy and speed is demonstrated and guidelines for implementation are presented, showing that the rotor losses can be calculated 2???3 faster without loss of accuracy. Finally, using the methods a number of rotor loss trends are confirmed.
机译:在新机器的后期设计阶段,通常需要借助3D有限元分析来计算转子涡流损耗,但仍然非常耗时。本文提出了两种基于FEM的方法,与完整的机器几何结构的瞬态模型相比,解决这些问题所需的时间可能更少,并且实现起来相对简单。两种方法都将从完整3D模型的有限数量的解中获得的气隙边界条件应用于仅包含转子几何形状的模型。两种方法的一个重要特性是,它们可以解决转子中的屏蔽效应。演示了该方法在精度和速度方面的性能,并给出了实施准则,表明转子损耗的计算速度可以提高2〜3而不损失精度。最后,使用这些方法可以确定许多转子损耗趋势。

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