Investigation of a novel intensifying-flux hybrid excited permanent magnet machine for electric vehicles

COMPEL Pub Date : 2024-07-01 DOI:10.1108/compel-11-2023-0572
Ruipan Lu, Zhangqi Liu, Xiping Liu, Baoyu Sun, Jiangwei Liang
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Abstract

Purpose

To address the issues of the insufficient output torque associated with the application of intensifying-flux permanent magnet (PM) machines in electric vehicles, this paper aims to propose an intensifying-flux hybrid excitation PM machine. It is possible to adjust the air gap magnetic field by adjusting the field current in the excitation winding, thereby increasing the torque output capability and speed range of the machine.

Design/methodology/approach

First, a novel intensifying-flux hybrid excited permanent magnet synchronous machine (IF-HEPMSM) is proposed on the basis of intensifying-flux permanent magnet synchronous machine (IF-PMSM) and an equivalent magnetic circuit model is established. Second, the tooth width and yoke thickness of the machine stator are optimized to ensure the overload capacity of the machine while effectively improving the wide flux regulation range. Furthermore, the electromagnetic characteristics of the IF-HEPMSM are investigated and compared with the IF-PMSM and conventional permanent magnet synchronous machine (PMSM) by using finite element simulations.

Findings

The id of IF-HEPMSM and IF-PMSM is greater than zero low-speed magnetizing current. And the flux-weakening current of the IF-HEPMSM is 18% and 3% smaller than of the conventional PMSM and IF-PMSM.

Practical implications

Aiming at the problems of IF-PMSM applied to electric vehicles, this paper proposes an IF-HEPMSM. The air gap magnetic field is adjusted by controlling the current of the excitation winding to improve the reliability of the machine. Therefore, the IF-HEPMSM combines the advantages of high-power density and high efficiency of the PMSM and the controllable magnetic field of the electro-excitation machine, which is of great engineering value when applied in the field of electric vehicles.

Originality/value

The proposed IF-HEPMSM offers better flux regulation capability with electromagnetic characteristics analysis and maps of dq-axis current as compared to IF-PMSM and conventional PMSM. Moreover, the improvement of the torque can make up for the shortcomings of the insufficient torque output capability of the IF-PMSM.

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电动汽车用新型增流混合励磁永磁机的研究
目的 为解决电动汽车中应用的增磁通永磁(PM)机输出扭矩不足的问题,本文旨在提出一种增磁通混合励磁永磁机。设计/方法/途径首先,在增力磁通永磁同步机(IF-PMSM)的基础上提出了一种新型增力磁通混合励磁永磁同步机(IF-HEPMSM),并建立了等效磁路模型。其次,优化了机器定子的齿宽和轭厚,在保证机器过载能力的同时,有效改善了宽磁通调节范围。此外,还研究了 IF-HEPMSM 的电磁特性,并通过有限元仿真将其与 IF-PMSM 和传统永磁同步电机 (PMSM) 进行了比较。实际意义针对应用于电动汽车的 IF-PMSM 存在的问题,本文提出了一种 IF-HEPMSM。通过控制励磁绕组的电流来调整气隙磁场,从而提高机器的可靠性。因此,IF-HEPMSM 结合了 PMSM 的高功率密度和高效率以及电励磁机的可控磁场等优点,在电动汽车领域的应用具有重要的工程价值。原创性/价值与 IF-PMSM 和传统 PMSM 相比,所提出的 IF-HEPMSM 通过电磁特性分析和 dq 轴电流图,具有更好的磁通调节能力。此外,转矩的提高弥补了 IF-PMSM 转矩输出能力不足的缺点。
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