考虑容错能力的无轭轴向磁场开关永磁电机多级优化设计

IF 1.5 4区 工程技术 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC
Javad Rahmani-Fard, Mohammed Jamal Mohammed
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引用次数: 0

摘要

本文提出了一种多级优化设计策略,旨在提高无轭轴向场磁通开关永磁(YASA-AFFSPM)电机的容错能力。该研究解决了在安全关键应用中使用的电动机系统的鲁棒性和可靠性的关键要求。通过采用全面的多目标优化方法,基于YASA-AFFSPM电机设计变量的主要影响分层,在三个层面上对电机的设计进行了细化。将设计变量分为三个级别并进行优化,从而获得考虑多个设计目标(包括平均扭矩、齿槽扭矩和容错能力)的综合最优解决方案。最优设计主要强调对开路和短路故障的容错能力。这是通过降低互感与自感的比率来实现的。为了简化优化,克里格模型在每个级别近似于有限元分析。此外,通过利用双通道绕组配置,展示了设计的有效性。构建了一个原型,实验验证表明,该系统的容错性能有了显著提高,平均扭矩提高了14%,齿槽扭矩提高了41%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Multi-level optimisation design of a yoke-less axial-field flux-switching permanent magnet motor considering the fault-tolerant capability

Multi-level optimisation design of a yoke-less axial-field flux-switching permanent magnet motor considering the fault-tolerant capability

This paper proposes a multi-level optimisation design strategy aimed at enhancing the fault-tolerant capability of a Yoke-less Axial-Field Flux-Switching Permanent Magnet (YASA-AFFSPM) motor. The research addresses the crucial requirement for robustness and reliability in electric motor systems utilised in safety-critical applications. By employing a comprehensive multi-objective optimisation approach, the motor's design is refined at three levels based on the main effect stratification of design variables for the YASA-AFFSPM motor. The design variables are divided into three levels and optimised, resulting in the attainment of a comprehensive optimal solution that considers multiple design goals, including average torque, cogging torque, and fault-tolerant capability. The optimal design places a primary emphasis on attaining a substantial level of fault tolerance for both open- and short-circuit faults. This is accomplished by reducing the ratio of mutual-inductance to self-inductance. To streamline optimisation, the Kriging model approximates finite element analysis at each level. Furthermore, the effectiveness of the design is showcased through the utilisation of a dual-channel winding configuration. A prototype is constructed, and experimental validation demonstrates a significant improvement in fault-tolerance performance, with results indicating enhancements of 14% in average torque and 41% in cogging torque.

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来源期刊
Iet Electric Power Applications
Iet Electric Power Applications 工程技术-工程:电子与电气
CiteScore
4.80
自引率
5.90%
发文量
104
审稿时长
3 months
期刊介绍: IET Electric Power Applications publishes papers of a high technical standard with a suitable balance of practice and theory. The scope covers a wide range of applications and apparatus in the power field. In addition to papers focussing on the design and development of electrical equipment, papers relying on analysis are also sought, provided that the arguments are conveyed succinctly and the conclusions are clear. The scope of the journal includes the following: The design and analysis of motors and generators of all sizes Rotating electrical machines Linear machines Actuators Power transformers Railway traction machines and drives Variable speed drives Machines and drives for electrically powered vehicles Industrial and non-industrial applications and processes Current Special Issue. Call for papers: Progress in Electric Machines, Power Converters and their Control for Wave Energy Generation - https://digital-library.theiet.org/files/IET_EPA_CFP_PEMPCCWEG.pdf
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