磁体边缘整形与虚拟槽相结合对风力发电用永磁转子性能的影响研究

Tajuddin Nur, K. O. Bachri, Ilyas Mansur, M. Siregar
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摘要

研究了定子铁心虚槽与磁体边缘形状的结合对定子铁心虚槽形状的影响。永磁发电机是在工程和科学应用中得到广泛应用的电机类型之一。永磁发电机的性能是指法向和切向磁通密度和齿槽转矩。它们可以根据磁通气隙分布的质量和数量来预测。在永磁发电机应用中需要考虑的最关键的问题是齿槽转矩的值。齿槽转矩是由转子铁芯内的磁体向定子铁芯槽口的磁通力产生的。这是由于气隙中法向磁通的密度和切向磁通的密度。由于结构、材料、制造缺陷等因素在某一阶段都会影响齿槽转矩的产生,因此,永磁发电机的齿槽转矩是减小的难点之一,特别是对于积分槽数的永磁发电机。本文主要研究了磁体结构对永磁发电机性能的影响。在研究中,选择了24槽/ 30极的永磁发电机。通过有限元分析,可以有效地降低切向磁通密度。因此,永磁发电机的齿槽转矩变得下降,从而使机器的性能得以提高。结合定子铁心磁体边缘和假人槽的形状,可使永磁发电机的齿槽转矩比初始结构降低到99.35%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study the Combining Magnet Edge Shaping and Dummy Slot on the Performance of PMG for Wind Power Applications
The effects of the shaping of magnet edge combining with dummy slots in stator core are studied in this paper. A permanent magnet generator is one of the electrical machine types greatly implemented in engineering and science applications. The permanent magnet generator performance refers to normal and tangential flux density and cogging torque. They can be forecasted depend on the quality and quantity of the distribution of the flux magnetic air gap. The most critical issue for the applications in the permanent magnet generator that needs to be contemplated is the value of cogging torque. The cogging torque is produced by the magnetic flux force from the magnet in the rotor core to the slot opening in the stator core. It is due to both the density of normal flux and the density of tangential flux in the air gap. Since many factors in a very stage influenced to produce the cogging torque, includes structure, material, and imperfection in manufacturing, hence the cogging torque in a permanent magnet generator is one of the difficult tasks to be reduced, especially for integral slot numbers. This work focused on the probe of magnet structure on the permanent magnet generator performance. In the study, a permanent magnet generator of 24 slot/ 30 pole has been chosen. By applying the finite element analysis of FEMM, it has been found that the tangential flux density can be reduced effectively. As an outcome, the cogging torque of the permanent magnet generator becomes decline, leads to the performance of the machine can be increased. The cogging torque of the permanent magnet generator with combining the shape of the magnet edge and dummy slot in the core of the stator can be brought down to 99.35 % contrasted with the initial structure..
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