首页> 外文会议>International Electric Vehicle Symposium and Exhibition >Motor performance improvement via ArcelorMittal's iCARe electrical steel range for automotive applications
【24h】

Motor performance improvement via ArcelorMittal's iCARe electrical steel range for automotive applications

机译:通过ArcelorMittal的ICare电气钢系列汽车应用的电机性能改进

获取原文

摘要

As previously reported [1-3], ArcelorMittal has a specific electrical steel product line for core laminations, which optimises the performance for automotive traction electrical machines. This iCARe product family consists of Save grades allowing for higher efficiency, Torque grades allowing for higher torque density and Speed grades for high speed rotors. The iCARe electrical steels now have been developed towards further loss reduction and polarisation increase. This paper shows the improved machine performance achievable by using these new iCARe grades. Automotive traction machines require high power density, high efficiency and high torque, to maximise the powertrain's performance and minimise the use of battery power. Permanent magnet synchronous machines (PMSM) are the preferred choice for electric and hybrid vehicles. When searching for cost reduction via eliminating the need for permanent magnets, wound rotor synchronous machines (WRSM) are an alternative. In this paper, a material comparison study is presented for both a PMSM and a WRSM having the same nominal speed and rated mechanical power. The reference case uses M330-35A electrical steel. The impact of switching to either Save or Torque grades of the latest generation is compared numerically: to determine the efficiency of each combination of machine topology and lamination type, the ArcelorMittal loss model is used [4], an extension of Bertotti's loss model [5]. The impact of each grade is checked by varying the stack height whilst keeping the output power level constant. Hence the bill of materials is affected, reflecting the amount of active materials (laminations, magnets, windings) needed within each machine type, depending on the chosen electrical steel grade. The results show the efficiency benefits when using low loss Save grades and the torque density benefits when using Torque grades. Moreover, the new Torque grades with lower losses present a new potential for further machine performance enhancement: for instance the Torque 27 grade combines outstanding increase of torque density with high efficiency.
机译:如前所述报道[1-3],ArcelorMittal具有用于芯叠层的特定电动钢产品系列,可优化汽车牵引电机的性能。该冰淇淋产品系列由允许更高效率的节省等级,扭矩等级允许高速转子的更高扭矩密度和速度等级。现在已经开发了冰淇淋电钢,以进一步损失减少和极化增加。本文通过使用这些新的ICare等级可以实现改进的机器性能。汽车牵引机需要高功率密度,高效率和高扭矩,以最大限度地提高动力总成的性能,并最大限度地减少电池电量的使用。永磁同步机(PMSM)是电动和混合动力车辆的首选选择。通过消除永磁体的需要搜索成本降低时,缠绕转子同步机(WRSM)是另一种选择。本文介绍了一种具有相同标称速度和额定机械功率的PMSM和WRSM的材料对比研究。参考盒采用M330-35A电钢。切换到节省或扭矩等级的影响在数值上比较:为了确定机器拓扑和层压类型的每个组合的效率,使用了围攻损失模型[4],百丽丢失模型的延伸[5 ]。通过改变堆叠高度来检查每个等级的影响,同时保持输出功率电平常数。因此,根据所选的电动钢级,材料的影响,反映了每种机器类型内所需的活性材料(层压,磁铁,绕组)的量。结果显示使用低损耗保存等级以及在使用扭矩等级时扭矩密度效益的效率优势。此外,具有较低损耗的新扭矩等级具有进一步的机器性能增强的新电位:例如,扭矩27等级以高效率结合了扭矩密度的出色增加。

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