Design and optimization of fractional slot concentrated winding permanent magnet machines for class IV electric vehicles

T. Rahman, R. Silva, Kieran Humphries, M. H. Mohammadi, D. Lowther
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引用次数: 4

Abstract

The design, optimization and application of a number of surface mounted fractional slot concentrated winding (FSCW) electric machines for application to Class IV electric vehicles have been considered. Four FSCW motors with nominal power ratings of 50, 65, 75 and 100 kW have been designed. The motors were optimized using a novel multi-objective optimization strategy which allows a large numbers of objectives to be considered while ensuring computational efficiency and Pareto optimality. Vehicle simulations were carried out using the optimized motors for some typical drive cycles. The gear ratio of the drive train was optimized for each motor with respect to the drive cycle and the vehicle performances were calculated. The methodology and results presented provide a novel and improved framework for considering the trade-offs between the motor size, gear ratio and vehicle performance for Class IV and other vehicle classes.
IV类电动汽车分槽集中绕组永磁电机的设计与优化
研究了多款适用于ⅳ类电动汽车的表面贴装分槽集中绕组电机的设计、优化和应用。设计了四种FSCW电机,额定功率分别为50、65、75和100千瓦。采用一种新颖的多目标优化策略对电机进行优化,该策略在保证计算效率和Pareto最优的同时考虑了大量目标。利用优化后的电机对典型工况进行了车辆仿真。根据驱动周期对各电机传动系的传动比进行了优化,并计算了整车性能。所提出的方法和结果提供了一个新的和改进的框架,用于考虑电机尺寸,传动比和车辆性能之间的权衡,为IV级和其他车辆类别。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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