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Design, Analysis of the Location and Materials of Neodymium Magnets on the Torque and Power of In-Wheel External Rotor PMSM for Electric Vehicles

机译:钕磁铁地点和材料的设计,分析电动车辆内外转子PMSM扭矩和功率

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摘要

The technology of mounting electric direct drive motors into vehicle wheels has become one of the trends in the field of electric vehicle drive systems. The article presents suggestions for answering the question: How should magnets be mounted on the External Rotor Permanent Magnet Synchronous Machine (ERPMSM) with three phase concentrated windings, to ensure optimal operation of the electric machine in all climatic and weather conditions? The ERPMSM design methodology is discussed. Step by step, a method related to the implementation of subsequent stages of design works and tools (calculation methods) used in this type of work are presented. By means of FEM 2D software, various ERPMSM designs were analyzed in terms of power, torque, rotational speed, cogging torque and torque ripple. The results of numerical calculations related to variations in geometric sizes and application of different base materials for each of ERPMSM machine components are presented. The final parameters of the motor designed for mounting inside the wheel of the vehicle are presented (Power = 53 kW, Torque = 347 Nm; Base speed = 1550 RPM), which correspond to the adopted initial assumptions.
机译:将电动直接驱动电动机安装到车轮中的技术已成为电动车辆驱动系统领域的趋势之一。本文提出了回答问题的建议:如何使用三相集中绕组安装在外部转子永磁同步机(ERPMSM)上的磁铁,以确保所有气候和天气条件中的电机的最佳运行?讨论了ERPMSM设计方法。逐步介绍了与在此类工作中使用的后续阶段的实现相关的方法。通过FEM 2D软件,在功率,扭矩,转速,齿槽扭矩和扭矩波动方面进行了各种ERPMSM设计。呈现了与ERPMSM机器组件中的每一个的几何尺寸和不同基础材料的几何尺寸和应用的变化相关的数值计算结果。呈现用于安装在车辆的车轮内的电动机的最终参数(POWER = 53 kW,扭矩= 347nm;基速= 1550 rpm),其对应于采用的初始假设。

著录项

  • 作者

    Andrzej Łebkowski;

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  • 年度 2018
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  • 原文格式 PDF
  • 正文语种 eng
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