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Influence of eddy current losses in the optimization of linear coreless BLDC motors with PCB windings

机译:涡流损耗对带有PCB绕组的线性无芯BLDC电机优化的影响

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This paper presents a series of numerical models aimed at estimating the main characteristics of linear coreless BLDC motors for the optimal sizing of these latter. The paper concentrates on windings printed on PCB. This kind of winding offers opportunities to significantly improve motors' performance, although it is more subject to eddy current losses than wire windings. Therefore, considering the harmonics contained in the airgap magnetic field, the work especially focus on the development of a 2D FEM model able to estimate these eddy currents in the copper tracks. The objective is to evaluate the eddy current harmonics and to adapt the winding shape and the motor dimensions, accordingly. The final aim of this work is therefore to propose full motor optimizations for various operating points and to observe the evolution of its optimal configuration.
机译:本文提出了一系列数值模型,旨在估算线性无铁心BLDC电动机的主要特性,以优化后者的尺寸。本文着重于印刷在PCB上的绕组。这种绕组提供了显着提高电动机性能的机会,尽管它比电线绕组更容易受到涡流损耗的影响。因此,考虑到气隙磁场中包含的谐波,这项工作特别着重于开发能够估计铜轨中这些涡流的二维有限元模型。目的是评估涡流谐波,并相应地调整绕组形状和电机尺寸。因此,这项工作的最终目的是针对各种工作点提出完整的电机优化方案,并观察其最佳配置的演变过程。

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