电动辅助自行车用铁氧体永磁电机的设计与分析

S. Bhat, S. Nikam, B. G. Fernandes
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引用次数: 10

摘要

电动自行车进入世界市场已经有几年了。通常,直流、无刷直流和永磁同步电机被用作电动自行车的牵引电机。本文对低成本铁氧体永磁电机进行了有限元建模和分析。该电机拟用于电动辅助自行车的牵引驱动。电动传动系由外转子电机和行星齿轮装置组成。带电机的行星齿轮传动装置结构紧凑,具有较好的过载能力。通过选择槽极比较低的槽极组合来减小齿槽转矩。同时,对永磁体的相位绕组和形状进行了修改,使得即使在集中绕组的情况下也能得到正弦反电动势。因此,电机的转矩波动最小化,同时保持低铜损耗。所设计的电机样机正在制作中,并将安装在自行车后轮上。
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Design and analysis of ferrite based permanent magnet motor for electric assist bicycle
Electric powered bicycles have been making their way into the world market for few years now. Typically DC, brush-less DC and PMSM motors are used as traction motors in electric bicycles. This paper describes finite element modeling and analysis of low cost ferrite based permanent magnet motor. This motor is intended to be used as traction drive in an electric assisted bicycle. The electric drive train consists of outer rotor motor along with planetary gear unit. The compact design arrangement of the planetary gear unit with motor provides better overload capability. The cogging torque is reduced by choosing a slot-pole combination with lower slots/pole ratio. Also, the phase winding and shape of permanent magnets are modified so as to obtain sinusoidal back-EMF even with a concentrated winding. Thus, torque ripple in the motor is minimized while keeping copper loss low. Prototype of the designed motor is being fabricated which is to be mounted on the rear wheel of the bicycle.
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