首页> 外文会议>International Conference on Quality in Research >Design and prototyping of 3-phase BLDC motor
【24h】

Design and prototyping of 3-phase BLDC motor

机译:三相BLDC电机的设计与原型设计

获取原文
获取外文期刊封面目录资料

摘要

The development of electric vehicle is now growing rapidly. Demands to deliver a reliable and easy to drive in motor control causes Brushless Direct Current (BLDC) motor becomes a potential candidate. A BLDC motor drive is a potential option for an electric vehicle since it has a high reliability, simple design, and ability to work at high rotation per minute (RPM). This paper discussed the Permanent Magnet BLDC Motor design method. The structure of an interior rotor permanent magnet type is selected to be used in the design of Permanent Magnet BLDC motor so that it can be applied in a drive that requires a large torque and capable of acceleration and deceleration with good response. Selection of 12 slots and 8 poles configuration aims for improving the motor performance. The motor is designed and simulated using a software-based Motor Solve FEA (Finite Element Analysis). Based on this design and simulation results, a prototype of BLDC motor is built. Parameters testing as stator resistance, inductances (the d-axis and q-axis inductance), and the back emf constant (Ke) were used to evaluate the result of the design and prototype motor. Measuring the prototype motor's parameters was carried out by several different methods depending on the parameters tested. Stator resistance testing is performed with the measurement of current in the coil which is then obtained by calculating the magnitude of stator resistance as 0.14710296 Ω. Measurements of d-axis stator inductance, q-axis stator inductance, and back emf constant of prototype permanent magnet BLDC motor is obtained as results of 0.35304710 mH, 0.38246769 mH and 0.09690626 Vs/rad respectively. The test results between design and prototype testing were quite good. The difference between the test results and the design of the prototype test results was caused by incompatibility of material composition although using the same type of material. The evaluation shows the electromagnetic parameters is influenced by its constituent materials.
机译:电动车的发展现在正在迅速增长。在电机控制中提供可靠且易于驱动的需求导致无刷直流(BLDC)电机成为潜在的候选者。 BLDC电动机驱动器是电动车辆的潜在选择,因为它具有高可靠性,简单的设计和在每分钟高旋转(RPM)的高旋转的能力。本文讨论了永磁体BLDC电机设计方法。选择内部转子永磁型的结构用于永磁体BLDC电动机的设计中,使得它可以应用于需要大扭矩并且能够具有良好反应的加速和减速的驱动器中。选择12个插槽和8个极配置的旨在提高电机性能。使用基于软件的电机解决FEA(有限元分析)设计和模拟电机。基于这种设计和仿真结果,建立了BLDC电机的原型。参数测试为定子电阻,电感(D轴和Q轴电感),以及后反向EMF常数(KE)用于评估设计和原型电动机的结果。测量原型电机参数是根据测试的参数的几种不同方法进行的。通过测量线圈中的电流测量来执行定子电阻测试,然后通过计算定子电阻的大小为0.14710296Ω。 D轴定子电感,Q轴定子电感和原型永磁体BLDC电动机的Q轴定子电感和反电动势恒定的测量值分别为0.35304710mH,0.38246769mH和0.09690626 Vs / rad的结果。设计和原型测试之间的测试结果非常好。测试结果与原型测试结果的设计之间的差异是由材料组合物的不相容性引起的,尽管使用相同类型的材料。评估显示电磁参数受其成分材料的影响。

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