High-dimensional optimal design of dual-rotor synchronous reluctance machines based on data-driven torque decomposition

IF 1.5 4区 工程技术 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC
Farnam Farshbaf-Roomi, Aran Shoaei, Jianguo Zhu, Qingsong Wang
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引用次数: 0

Abstract

The multi-objective optimal design of double-sided stator dual-rotor synchronous reluctance machines (DSS-DRSynRMs) is a challenging high-dimensional problem. The objective of this paper is to present a new optimal design method based on data-driven models and the principle of torque decomposition addressing the aforementioned issue. For this purpose, a 26-parameter optimisation problem is solved by employing the proposed method consisting of three sequential phases. Through the proposed method, the combination of artificial neural network (ANN) and recently introduced waveform targeting surrogate model (WTSM) strategy is investigated to mitigate the computational complexity of the optimisation process. Furthermore, the electromagnetic performance of the final optimal design has been comprehensively analysed showing a significant reduction in torque ripple rate and improved torque density. Moreover, the computational efficiency of the proposed method has been compared to the popular multi-level multi-objective optimisation method. From the discussion, it can be found that the proposed method provides a reduced computation time and wider search space.

Abstract Image

基于数据驱动转矩分解的双转子同步磁阻电机高维优化设计
双面定子双转子同步磁阻电机的多目标优化设计是一个具有挑战性的高维问题。针对上述问题,本文提出了一种基于数据驱动模型和扭矩分解原理的优化设计方法。为此,采用由三个连续阶段组成的方法解决了26个参数的优化问题。通过提出的方法,研究了人工神经网络(ANN)与最近引入的波形定位代理模型(WTSM)策略的结合,以减轻优化过程的计算复杂度。此外,对最终优化设计的电磁性能进行了全面分析,结果显示转矩脉动率显著降低,转矩密度显著提高。并将该方法的计算效率与目前流行的多目标优化方法进行了比较。从讨论中可以发现,该方法减少了计算时间和更宽的搜索空间。
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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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