纯电动汽车对称双三相IPMSM的设计考虑

Sandeep V. Nair, Veena P, Shivam Chakraborty, Kunal Layek, K. Hatua
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引用次数: 0

摘要

电动汽车的电机设计是为了满足各种性能要求,如爬坡性、加速时间、最高速度和行驶里程。电动汽车的电机设计与典型应用的设计(如风扇和泵)在某些方面有所不同。本文提出了一种用于纯电动汽车的对称双三相内置永磁同步电动机的设计方法。双三相电机具有更好的可靠性,并且消除了与三相配置一起使用的DC-DC升压变换器。商业电池电动汽车Mahindra e-Verito被认为是设计的目标车辆。采用FEMM软件对所设计的37kW dt0 - ipmsm进行了验证。在一个低功率3kW的DTP0-IPMSM实验室样机上,实验验证了所提出的DTP0-IPMSM的控制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design Considerations for a Symmetric Dual Three-Phase IPMSM for Battery Electric Vehicles
The motors for electric vehicles are designed to satisfy various performance requirements like gradability, acceleration time, top speed and driving range. The motor design for electric vehicles is different in some aspects compared to the design for typical applications like fan and pump. In this paper, the design procedure of a symmetric dual three-phase interior permanent magnet synchronous motor (DTP0-IPMSM) for a battery electric vehicle is proposed. The dual-three phase motor has better reliability and eliminates the DC-DC boost converter used together with 3-phase configuration. A commercial battery electric vehicle Mahindra e-Verito is considered as the target vehicle for the design. The design of the proposed 37kW DTP0-IPMSM is validated using FEMM software. The control of the proposed DTP0-IPMSM is experimentally verified on a low power 3kW DTP0-IPMSM lab prototype.
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