轻型电动汽车分槽重叠绕组永磁同步电机动力学建模与设计

Deepak Saw, Bhim Singh
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摘要

本文研究了两轮(2W)电动汽车(EV)的车辆动力学建模以及3.2kW、18槽10极V型转子内嵌式永磁同步电机(IPMSM)的电磁性能。采用世界统一轻型车辆测试循环(WLTC) 3级驾驶循环对车辆动力学进行建模。采用二维有限元分析方法对其电磁性能进行了分析。为获得满足车辆机械性能要求的电动牵引电机额定值,对两轮车进行了车辆动力学建模。此外,本文进一步研究了18槽和10极分数槽重叠绕组(OW)的电磁性能关键参数,并将其与传统的12槽和10极分数槽集中绕组(FSCW)和18槽和10极非重叠绕组(NOW)的性能进行了比较。研究发现,与传统的12槽10极FSCW和18槽10极无重叠绕组(NOW)相比,18极和10极OW IPMSM的转矩脉动和齿槽转矩减小,平均电磁转矩提高。本文选用V型内嵌式永磁转子。
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Dynamic Modeling and Design of a Fractional Slot Overlapped Winding IPMSM for Light Electric Vehicle
This work investigates the modeling of vehicle dynamics of two wheelers (2W) electric vehicle (EV) and electromagnetic performance of 3.2kW, 18 slot and 10 pole V type rotor interior permanent magnet synchronous motor (IPMSM) for the traction electric motor. The Worldwide harmonized Light vehicles Test Cycles (WLTC) Class 3 drive cycle is utilized to model the dynamics of vehicle. The electromagnetic performance is analyzed using the 2D finite element analysis (FEA) method. Modeling of vehicle dynamics for two wheelers is performed to obtain the required rating of electric traction motor to meet the mechanical performance of the vehicle. Moreover, this work further investigates key parameters of electromagnetic performance of an 18 slot and 10 pole fractional slot (FS) overlapping winding (OW) and compared their performances with conventional 12 slot and 10 pole fractional slot concentrated winding (FSCW) and 18 slot and 10 pole FS non-overlapping (NOW). It is found that, there is reduction in the torque ripple and cogging torque as well as the average electromagnetic torque improves in 18 pole and 10 pole OW IPMSM as compared with the conventional 12 slot and 10 pole FSCW and 18 slot and 10 pole non-overlapping winding (NOW). The V type interior permanent magnet (IPM) rotor is selected in this work.
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