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Design and Analysis of Electric bike Hub-Motor using Motor-CAD

机译:电动CAD电动自行车毂电机的设计与分析

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Inner rotor and outer rotor brushless dc motors are in vogue nowadays as they are currently being used in designing electric bikes. BLDC motors have a wide range of advantages (like higher efficiency smaller size). The E-Magnetic analysis and Lab model analysis are an important part of designing an outer rotor BLDC Hub motor because the motor is attached to the wheels of the bike. It is significantly different from a petrol engine motorbike as in a petrol engine motorbike, the engine and the wheel are separate. So, any heating of the engine would not heat the wheel but for the case of an electric bike, since the hub motor and the bike wheel are not separated from each other, heating of the hub motor would produce a similar type of heating in the wheels. If the temperatures and the total magnetic flux density of the hub motor go beyond normal values, then there would be a chance that the electric motorbike would not start at all. In this work, both the E Magnetic analysis and the Lab model analysis are done on a 36 slot, 24 poles outer rotor BLDC motor which was also designed in Ansys Motor-CAD. All the E Magnetic plots and Lab plots obtained from the analysis are clearly shown in this paper. The different views of the model in terms of axial, radial, and schematic are also shown clearly. This research work provides a clear-cut idea of how correctly analyze a motor E-magnetically which is the first very important step in further analysis of the thermal model in Ansys Motor-CAD.
机译:现在转子和外转子无刷直流电动机在目前用于设计电动自行车时的时尚。 BLDC电机具有广泛的优点(如较高效率更小的尺寸)。 E-磁性分析和实验室模型分析是设计外转子BLDC集线器电机的重要组成部分,因为电机连接到自行车的车轮上。它与汽油发动机摩托车显着不同,如汽油发动机摩托车,发动机和车轮都是分开的。因此,发动机的任何加热都不会加热车轮,而是用于电动自行车的情况,因为轮毂电机和自行车轮没有彼此分开,所以轮毂电机的加热会产生类似类型的加热类型轮子。如果温度和集线器电机的总磁通密度超出正常值,那么电动摩托车就会有可能无法启动。在这项工作中,e磁性分析和实验模型分析都在36插槽上完成,24个杆外转子BLDC电机,该电机也设计在ANSYS Motor-Cad中。本文清楚地显示了从分析中获得的所有磁性图和实验室图。在轴向,径向和示意图方面也显示了模型的不同视图。该研究工作提供了一种明确的思想,对如何正确分析电动机E-磁通,这是进一步分析ANSYS Motor-Cad的热模型的第一个非常重要的步骤。

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