A Novel Counter-Rotating Single-Stator Dual- Internal-Rotor Permanent Magnet Machine

IF 8.3 1区 工程技术 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC IEEE Transactions on Transportation Electrification Pub Date : 2024-10-07 DOI:10.1109/TTE.2024.3475046
Zhitong Ran;Zi Qiang Zhu;Yanjian Zhou;Liang Chen;Lei Yang
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Abstract

This article proposes a novel counter-rotating single-stator dual-internal-rotor permanent magnet (CSDPM) machine. This machine utilizes magnetic field modulation in the fractional slot concentrated winding permanent magnet (PM) and vernier PM (VPM) machines to realize the counter-rotating (CR) operation for some special applications, such as underwater vehicles, wind power turbines, household appliances, and so on. This machine has only one set of stator armature winding with easy manufacturing and robust structure, which greatly reduces the cost, weight, and space requirement compared with the conventional CR system. The magnetic field modulation principle and the relationship between two rotors and the armature reaction are analyzed. The electromagnetic performance of the CSDPM machine is comprehensively investigated. It shows that the proposed CR system with the CSDPM machine has higher torque than the conventional CR system by using two single-rotor PM machines. There is no magnetic coupling effect between the two rotors in the CSDPM machine. The torque split of two rotors can be easily changed with the corresponding rotor stack length. The results are validated by experiments on a prototype CSDPM machine.
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新型逆旋转单定子双内转子永磁机
本文提出了一种新型的反向旋转单定子双内转子永磁电机。该机利用分数槽集中绕组永磁(PM)和游标永磁(VPM)电机中的磁场调制,实现对转(CR)运行,适用于水下航行器、风力发电机组、家用电器等特殊应用。本机只有一套定子电枢绕组,制造方便,结构坚固,与传统的CR系统相比,大大降低了成本、重量和空间要求。分析了磁场调制原理以及两转子与电枢反应的关系。对CSDPM电机的电磁性能进行了全面的研究。结果表明,采用CSDPM电机的永磁同步系统比采用两个单转子永磁同步电机的传统永磁同步系统具有更高的转矩。CSDPM电机的两转子之间不存在磁耦合效应。两个转子的转矩分配可以随相应的转子堆长而改变。并在CSDPM样机上进行了实验验证。
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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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