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Simulation of magnetic field distribution of opposite-poles single-disc Permanent Magnet Rotor

机译:反极单片永磁转子的磁场分布模拟

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摘要

The study development regarding Axial Flux Permanent Magnet Generator (AFPMG) has been increasingly interesting, since its construction is simple and easy to construct; permanent magnet type NdFeB has high density, available everywhere and relatively low cost; without using brushes and slip ring, thus the maintenance cost can be low, long usage duration, direct drive connection. These will affect in the increasing efficiency and reliability. One of the problems which remain to be the main issue in AFPMG is rotor disc dimension influenced by distance between magnets in rotor disc. This paper discussed magnetic field distribution simulation between permanent magnet NdFeB type N40 with diameter dimension 40 mm and 10 m in height on different pole rotor disc in order to obtain the minimum disc dimension with maximum magnetic flux distribution. Simulation was performed by Finite Element Method Magnetics (FEMM). The simulation result was presented in the form of magnetic field distribution geometry on two permanent magnets inside rotor disc. It showed that the magnetic field strength in the midpoint between different pole single rotor was very low (44 mT) on the distance of 25 mm.
机译:由于轴向磁通永磁发电机(AFPMG)的结构简单且易于构造,因此它的研究发展变得越来越有趣。永磁型NdFeB具有高密度,无处不在和相对较低的成本;无需使用电刷和滑环,因此维护成本低,使用寿命长,直接驱动连接。这些将影响效率和可靠性的提高。在AFPMG中仍然是主要问题的问题之一是转子盘的尺寸受转子盘中磁体之间的距离影响。本文讨论了直径为40 mm,高度为10 m的NdFeB型N40永磁体在不同极转子盘上的磁场分布模拟,以获得最小的盘形尺寸和最大的磁通量分布。模拟是通过有限元方法磁学(FEMM)进行的。仿真结果以转子圆盘内部两个永磁体上的磁场分布几何形式表示。结果表明,在25 mm的距离上,不同极单转子之间的中点磁场强度非常低(44 mT)。

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