变磁通永磁电机高效区边界的研究与调节

Q1 Engineering
Xuefeng Yu;Xiaoyong Zhu;Li Quan;Zixuan Xiang;Deyang Fan
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引用次数: 0

摘要

随着电动汽车(EV)的日益复杂化,对电动汽车驱动电机的宽速范围高效特性提出了严格要求。本研究将可变磁通效应引入永磁(PM)电机,并提出了一种可变磁通永磁(VMF-PM)电机。首先,灵活调节磁通,同步拓宽调速范围和高效率区域。随后,考虑到电机速度、电流和磁通的变化,建立了效率分析模型。结果表明,通过有针对性地设计可变磁通泄漏拓扑结构,可以在对高效率边界进行理论研究的基础上提高高速运转时的效率。此外,基于有限元分析,研究了 VMF-PM 电机关键参数优化前后的性能,包括磁通变化特性和效率特性。最后,制作并测试了一台原型电机。理论分析和实验结果都证实,在变磁通效应的帮助下,电机的高效率区域得到了有效拓宽,为设计宽速程高效率电机提供了一条潜在的研究路径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation and Regulation of High-Efficiency Region Boundary of Variable Magnetic Flux Permanent Magnet Motor
With the increasing complexity of electrical vehicles (EVs), the wide-speed-range high-efficiency characteristics of EV drive motors are in strict demand. In this study, the variable magnetic flux effect is introduced into a permanent magnet (PM) motor, and a variable magnetic flux permanent magnetic (VMF-PM) motor is proposed. First, the flux is adjusted flexibly to synchronously broaden the speed regulation range and high-efficiency region. Subsequently, an efficiency analytical model is developed considering the motor speed, current, and flux variations. It is indicated that by the purposeful design of the variable flux leakage topology, the efficiency under high speed can be improved based on a theoretical investigation of the high-efficiency boundary. In addition, based on finite element analysis, the performances before and after optimization of the key parameters of the VMF-PM motor are investigated, including the flux variable characteristics and efficiency characteristics. Finally, a prototype motor is built and tested. Both theoretical analysis and experimental results confirm that based on the assistance of the variable magnetic flux effect, the motor high-efficiency region is broadened effectively, providing a potential research path for designing a wide-speed-range high-efficiency motor.
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来源期刊
Chinese Journal of Electrical Engineering
Chinese Journal of Electrical Engineering Energy-Energy Engineering and Power Technology
CiteScore
7.80
自引率
0.00%
发文量
621
审稿时长
12 weeks
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