首页> 外文会议>IEEE/ASME International Conference on Advanced Intelligent Mechatronics >Mechatronic model of a novel slotless permanent magnet DC-motor with air gap winding design
【24h】

Mechatronic model of a novel slotless permanent magnet DC-motor with air gap winding design

机译:具有气隙绕组设计的新型槽永磁直流电动机的机电型模型

获取原文

摘要

This paper presents a mechatronic model of a novel slotless permanent magnet DC-motor with air gap winding. Besides technical advantages of this type of motor like high power density, high torque, very low weight and high efficiency, the motor design allows a very precise and efficient modelling with limited effort. A nonlinear model of magnetic field density can be extracted from a detailed nonlinear FE-model build in ANSYS/Maxwell, approximated by Fourier series and then used to model driving torque and back EMF, representing the coupling between electrical and mechanical subsystems. Analytically founded numerical models for driving torque and back EMF will be given. Real geometry of the phase winding is taken into account to improve model accuracy. The electrical subsystem will be described as coupled three phase system, whose parameters can also be extracted from the nonlinear FE-model with high accuracy. Together with a mechanical model of the rotor a MATLAB/Simulink model is build and extended by models of the hall sensors to detect rotor position and commutation logic to control the HEX-Bridge during operation. Finally, results of a complex simulation model, based on the parameters of the prototype of a wheel-hub motor, implementing the new motor design, are getting shown. Simulation results compare very well to measured data. Simulation time is very short due to the efficient approximation of magnetic flux density.
机译:本文介绍了一种具有气隙绕组的新型槽永磁直流电动机的机电型模型。除了这种电机的技术优势,如高功率密度,高扭矩,重量非常低,效率高,电动机设计均允许具有极其精确和有效的造型。磁场密度的非线性模型可以从ANSYS / MAXWELL中的详细非线性FE模型构建中提取,由傅立叶串近似,然后用于模拟驱动扭矩和后退EMF,表示电气和机械子系统之间的耦合。分析建立的用于驱动扭矩和后退EMF的数值模型。考虑到相位绕组的实际几何形状以提高模型精度。电气子系统将被描述为耦合三相系统,其参数也可以高精度地从非线性FE模型中提取。与转子的机械模型一起由霍尔传感器的模型构建和扩展Matlab / Simulink模型,以检测转子位置和换向逻辑,以在操作期间控制十六进制桥。最后,基于轮毂电机的原型,实现了新电机设计的复杂仿真模型的结果。仿真结果比较效果很好。由于磁通密度的有效近似,模拟时间非常短。

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