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Decoupled Modeling in a Multifrequency Domain: Integration of Actuation and Power Transfer in One Device

机译:多频域中的去耦建模:一台设备中驱动和功率传输的集成

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摘要

A novel topology of a moving-coil, tubular permanent magnet linear motor with an integrated coaxial transformer is introduced in this paper. The topology is able to continuously transfer 800 W of power and generate at least 250 N of force. The isotropic, soft-magnetic composite core of the topology simultaneously functions as the flux guide of a high-frequency (5–10 kHz) transformer core and the low-frequency ($<$ 100 Hz) motor core. The magnetic fields of the motor and the transformer have an orthogonal mutual orientation to minimize cross-coupling effects between both functionalities. The magnetic behavior of the complex, 3-D, electromagnetic problem, that simultaneously operates in two frequency domains, is analyzed by means of decoupled Fourier models. The Fourier models are, first, applied to identify the electromagnetical implications that originate from the integration of the two functionalities, and, second, applied within an optimization routine to obtain a final design. The optimal design is then compared to 3-D finite element analysis simulations.
机译:介绍了一种带有集成同轴变压器的动圈式管状永磁直线电机的新型拓扑。该拓扑能够连续传递800 W的功率并产生至少250 N的力。拓扑结构的各向同性软磁复合磁芯同时充当高频(5-10 kHz)变压器磁芯和低频( $ <$ 100 Hz)电动机磁芯。电动机和变压器的磁场具有相互正交的方向,以使两个功能之间的交叉耦合效应最小。通过解耦傅里叶模型分析了同时在两个频域中运行的复杂3D电磁问题的磁行为。首先,将傅里叶模型应用于识别源自两个功能集成的电磁影响,其次,在优化例程中应用傅里叶模型以获得最终设计。然后将最佳设计与3-D有限元分析仿真进行比较。

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