首页> 外文期刊>Industry Applications, IEEE Transactions on >Design Optimization of an Electric Machine for a 48-V Hybrid Vehicle With Comparison of Rotor Technologies and Pole-Slot Combinations
【24h】

Design Optimization of an Electric Machine for a 48-V Hybrid Vehicle With Comparison of Rotor Technologies and Pole-Slot Combinations

机译:具有48V混合动力车辆的电机设计优化,具有转子技术与杆子槽组合的比较

获取原文
获取原文并翻译 | 示例
           

摘要

Through analytical equations followed by a systematic optimization study using high-fidelity finite-element (FE) models, the torque capability of three common synchronous machine technologies-namely, a permanent magnet (PM) synchronous machine (PMSM) with V-shaped rare-earth rotor magnets, a PMSM with deep V-shaped ferrite rotor magnets, and a synchronous reluctance machine (SynRM) with four layers of conforming flux barriers are compared for an application in a 48-V mild hybrid electric car. The optimization of the deep V-shaped ferrite PMSM automatically resulted in a spoke-type PM layout for maximum torque production. Yet, an optimized SynRM with conforming flux barriers was achieved that could produce a higher torque than ferrite PMSM. One machine technology is selected and six variants of it, with two rotor PM layouts each with three alternative pole-slot combinations, are subsequently subjected to a large-scale FE model-based drive-cycle design optimization. Various pole-slot combinations are methodically compared in terms of drive-cycle losses, active material cost, torque ripple, and PM demagnetization level. More than 20 000 designs were analyzed over ten energy-centric torque-speed points to identify an optimal design solution. The results of multiphysics analysis incorporating electromagnetics, computational fluid dynamics, and structural analyses are provided, including a study on three different water jacket concepts. A final design is prototyped and primary experimental results are provided.
机译:通过分析方程,随后使用高保真有限元(FE)型号的系统优化研究,三种常见的同步机技术的扭矩能力 - 即永磁体(PM)同步机(PMSM),具有V形稀有在48V温和的混合动力电动汽车中,比较了地球转子磁铁,具有深V形铁氧体转子磁铁的PMSM,以及具有四层符合磁通屏障的同步磁阻机(Synrm)。深V形铁氧体PMSM的优化自动导致辐条型PM布局,以进行最大扭矩产生。然而,实现了具有符合焊剂屏障的优化的SynrM,其可以产生比铁氧体PMSM更高的扭矩。选择了一台机器技术,其六个变型,两个转子PM布局,每次具有三个替代的极点槽组合,随后进行大规模的FE模型的驱动循环设计优化。在驱动循环损耗,有源材料成本,扭矩脉动和PM退磁水平方面有条理地比较各种杆槽组合。分析了超过20 000个设计,以识别最佳设计解决方案。提供了包含电磁,计算流体动力学和结构分析的多体学分析的结果,包括三种不同的水夹克概念的研究。最终设计是原型的,并且提供了初级实验结果。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号