Diverse Slot-Opening Designs for Cogging Torque and Performance Optimization in PM Machines

IF 8.3 1区 工程技术 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC IEEE Transactions on Transportation Electrification Pub Date : 2025-02-11 DOI:10.1109/TTE.2025.3540837
Litao Dai;Shuangxia Niu;Jian Gao;Kun Liu;Shoudao Huang;W. L. Chan
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Abstract

The slot-opening structure in permanent magnet machines (PMMs) plays a crucial role in optimizing torque, electromotive force (EMF), and electromagnetic vibration metrics. Consequently, significant attention has been devoted to optimizing its design, particularly focused on reducing cogging torque through methods such as tooth shape optimization and dummy slots. However, current slot-opening design techniques face challenges, particularly in compromising average torque and inadequately suppressing cogging torque due to simplistic modifications of slot reluctance harmonics. In contrast, this study introduces a comprehensive slot harmonics configuration (SHC) method alongside diverse slot-opening design schemes, showcasing enhanced effectiveness in mitigating cogging torque in various PMM structures with different pole-slot combinations. The key of this approach involves adjusting the airgap magnetic reluctance harmonics to amplify the least common multiple (LCM) of interacting harmonics responsible for cogging torque generation. Through extensive validation via the finite-element method (FEM) and experimental test, the proposed method emerges as a promising solution for effectively reducing cogging torque and enhancing the overall performance of PMMs.
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不同的开槽设计在永磁机床的齿槽扭矩和性能优化
永磁电机的开槽结构在优化转矩、电动势和电磁振动指标方面起着至关重要的作用。因此,人们对其优化设计给予了极大的关注,特别是通过齿形优化和假齿槽等方法来减小齿槽扭矩。然而,目前的开槽设计技术面临着挑战,特别是由于对槽磁阻谐波的简单修改,在降低平均扭矩和无法充分抑制齿槽扭矩方面。相比之下,本研究引入了一种综合的槽谐波配置(SHC)方法以及不同的开槽设计方案,展示了在不同极-槽组合的各种PMM结构中减轻齿槽扭矩的有效性。该方法的关键在于调节气隙磁阻谐波,以放大引起齿槽转矩产生的相互作用谐波的最小公倍数。通过有限元法和实验验证,该方法是有效减小齿槽转矩和提高PMMs整体性能的一种有前途的解决方案。
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来源期刊
IEEE Transactions on Transportation Electrification
IEEE Transactions on Transportation Electrification Engineering-Electrical and Electronic Engineering
CiteScore
12.20
自引率
15.70%
发文量
449
期刊介绍: IEEE Transactions on Transportation Electrification is focused on components, sub-systems, systems, standards, and grid interface technologies related to power and energy conversion, propulsion, and actuation for all types of electrified vehicles including on-road, off-road, off-highway, and rail vehicles, airplanes, and ships.
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