Cogging torque reduction by modifying stator teeth and permanent magnet shape on a surface mounted PMSG

Herlina, R. Setiabudy, A. Rahardjo
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引用次数: 15

Abstract

Cogging torque is an outstanding issue that regularly occurs in the Surface-mounted Permanent Magnet Synchronous Generator (SM-PMSG). Cogging torque is importand to be reduced because it will generate noise and friction on the generator so it will decrease the efficiency and lifetime of the generator. For wind turbine application, the cogging torque will hold back the production of electrical power. Many methods are developed to reduce the cogging torque. In this study, the authors proposes methods of reducing cogging torque by modifying stator teeth and the permanent magnet of the rotor. three proposed models and a reference model of generator were, simulated using FEMM 4.2 software. The reduction of cogging torque after correspondence with the reference model is modification stator teeth by adding Half-Cylinder anti-notch is 93,3%, a bread-loaf permanent magnet model is 39,1% and a combination model is 78,1% at positive peak.
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通过修改定子齿和永磁体形状在表面安装的PMSG上的齿槽转矩减少
齿槽转矩是表面安装式永磁同步发电机(SM-PMSG)中经常出现的一个突出问题。齿槽转矩很重要,必须减小,因为它会对发电机产生噪音和摩擦,从而降低发电机的效率和寿命。对于风力涡轮机应用,齿槽扭矩将阻碍电力的产生。为了减小齿槽转矩,开发了许多方法。在这项研究中,作者提出了通过改变定子齿和转子的永磁体来减小齿槽转矩的方法。利用FEMM 4.2软件对三个模型和一个参考模型进行了仿真。与参考模型对应后的齿槽转矩减小量为:添加半圆柱抗缺口修正定子齿减小量为93.3%,面包面包永磁模型减小量为39.1%,组合模型减小量为78.1%。
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