A new approach to minimize the cogging torque of axial flux pmg for under water applications

S. Moury, M. Iqbal
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引用次数: 1

Abstract

The rotor of a typical water current turbine rotates below 100 rpm. In conventional hydro installation the generator is coupled to the turbine via a gear box, so that it can typically rotate at a speed of 1500 or 1800 rpm. The water current turbine can be simplified by eliminating the gear box and by using a low-speed generator, the rotor of which rotates at the same speed as the rotor of the turbine. The main design challenge for a direct driven Permanent Magnet Generator (PMG) is to minimize the cogging torque. Cogging torque is an inherent characteristic of PMGs and is caused by the geometry of the generator. In this paper a new approach to minimize the PMG cogging torque is proposed. Basic design of a low cogging torque generator is also provided.
一种减小水下轴向磁通钻齿转矩的新方法
典型的水轮机转子转速低于100转/分。在传统的水力发电装置中,发电机通过齿轮箱与水轮机耦合,因此它通常可以以1500或1800转/分钟的速度旋转。通过取消齿轮箱和使用低速发电机,其转子以与水轮机转子相同的速度旋转,可以简化水轮机。直接驱动永磁发电机(PMG)的主要设计挑战是最小化齿槽扭矩。齿槽转矩是永磁同步电机的固有特性,是由发电机的几何形状引起的。本文提出了一种减小齿轮传动齿槽转矩的新方法。本文还介绍了一种低齿槽转矩发生器的基本设计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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