Static magnetic field analysis of hollow-cup motor model and bow-shaped permanent magnet design |
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Institution: | 1. Research Institute for Frontier Science, Beihang University, Beijng 100083, China;2. Ningbo Institute of Technology, Beihang University, Ningbo 315800, China;3. School of Instrumentation and Optoelectronics Engineering, Beihang University, Beijng 100083, China |
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Abstract: | The hollow-cup Permanent Magnet (PM) motors have the characteristics of low power consumption, and are widely used in the aerospace field. At present, the tile-shaped PMs used by hollow-cup PM motors have poor sinusoidal characteristics of the air gap magnetic flux density waveform, which will cause torque ripple. The existing method for improving the air gap magnetic flux density waveform is not very effective when applied to hollow cup, a special motor with no stator core and large air gap. A bow-shaped PMs structure is designed for the hollow-cup motor in this paper. First, the equivalent surface current method is used to calculate the analytical formula of the static magnetic field of the model. Then, the Finite Element (FE) method is used to calculate the static air gap flux density waveform of conventional tile-shaped PMs and bow-shaped PMs with different bow heights, and the corresponding harmonics and sine distortion are obtained by Fourier decomposition. The simulation results show that the bow-shaped PMs can effectively improve the sinusoidal characteristics of the static air gap flux density waveform. And the suitable bow height is determined. Finally, a prototype is made based on the suitable bow height for experiments, and compared with the analytical result and the FE result, and the accuracy and effectiveness of the bow-shaped PMs with the suitable bow height are verified. |
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Keywords: | Air gap flux density Bow height Finite element Permanent magnet motor Static magnetic field |
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