...
首页> 外文期刊>International Journal of Automotive Technology >MODELING OF IRON LOSSES IN PERMANENT MAGNET SYNCHRONOUS MOTORS WITH FIELD-WEAKENING CAPABILITY FOR ELECTRIC VEHICLES
【24h】

MODELING OF IRON LOSSES IN PERMANENT MAGNET SYNCHRONOUS MOTORS WITH FIELD-WEAKENING CAPABILITY FOR ELECTRIC VEHICLES

机译:电动汽车用具有弱磁场能力的永磁同步电动机中铁损的建模

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Recent advancements of permanent magnet (PM) materials and solid-state devices have contributed to a substantial performance improvement of permanent magnet machines. Owing to the rare-earth PMs, these motors have higher efficiency, power factor, output power per mass and volume, and better dynamic performance than induction motors without sacrificing reliability. Not surprisingly, they are continuously receiving serious considerations for a variety of automotive and propulsion applications. An electric vehicle (EV) requires a high-efficient propulsion system having a wide operating range and a capability of generating a high peak torque for short durations. The improvement of torque-speed performance for these systems is consequently very important, and researches in various aspects are therefore being actively pursued. A great emphasis has been placed on the efficiency and optimal utilization of PM machines. This requires attention to many aspects related to the machine design and overall performance. In this respect, the prediction of iron losses is particularly indispensable and challenging, especially for drives with a deep field-weakening range. The objective of this paper is to present iron loss estimations of a PM motor over a wide speed range. As aforementioned, in EV applications core losses can be significant during high-speed operation and it is imperative to evaluate these losses accurately and take them into consideration during the motor design stage. In this investigation, the losses are predicted by using an analytical model and a 2D time-stepped finite element method (FEM). The results from different analytical approaches are compared with the FEM computations. The validity of each model is then evaluated by these comparisons.
机译:永磁体(PM)材料和固态设备的最新发展为永磁电机的性能大幅提高做出了贡献。由于采用了稀土永磁电动机,因此这些电动机比感应电动机具有更高的效率,功率因数,单位质量和体积的输出功率以及更好的动态性能,而又不牺牲可靠性。毫不奇怪,它们在各种汽车和推进应用中不断受到认真的考虑。电动汽车(EV)需要一种高效的推进系统,该系统应具有较宽的工作范围,并具有在短时间内产生高峰值转矩的能力。因此,这些系统的转矩-速度性能的提高非常重要,因此正在积极地进行各个方面的研究。重点放在了PM机器的效率和最佳利用上。这需要注意与机器设计和整体性能有关的许多方面。在这方面,铁损的预测尤其必不可少且具有挑战性,特别是对于具有弱磁场范围的变频器。本文的目的是提出在较宽的速度范围内永磁电动机的铁损估算。如前所述,在电动汽车应用中,铁芯损耗在高速运行期间可能非常重要,因此必须准确评估这些损耗,并在电机设计阶段将其考虑在内。在这项研究中,通过使用分析模型和二维时步有限元方法(FEM)来预测损失。将来自不同分析方法的结果与FEM计算进行比较。然后,通过这些比较评估每个模型的有效性。

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