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New design methodologies for printed circuit axial field brushless dc motors

机译:印刷电路轴向场无刷直流电动机的新设计方法

摘要

[Abstract]udA number of factors are contributing to the increased practical importance of printed circuit axialudflux brushless direct current (BLDC) machines. The main ones are the availability of low cost power electronic devices and digital controllers as well as cost effective high strength permanent magnets. Advancement of multi-layer printed circuit technology is also an important factor. Existing printed circuit board motors, found in applications such as computer disk drives and portable audio-visual equipment, are typically rated at a few watts per thousand revolutions per minute (krpm). The focus of this thesis project has been on printed circuit motors with ratings of a few tens of watts per krpm.ududA significant part of this thesis project has been devoted to development of systematic design procedures for printed circuit stators. In particular those procedures include algorithms which allow performance comparisons of several stator coil shapes. A new coil shape, with improvedudtorque capability, has been developed. BLDC motors that operate in sensorless mode has advantages such as lower cost, better reliability and space saving. A new generalised version of the previously reported equaludinductance method has been developed which allows sensorless commutation of printed circuit BLDC motors down to zero speed and start-up with practically no back rotation.ududComputer efficient numerical models have been developed to predict phase inductances and stator eddy-current loss. Sufficiently accurate phase inductance predictions make possible theoretical assessment of performance of motors under sensorless commutation control that is based on the equal inductance method. The proposed method of calculation of eddy current loss allows designers to determine the track width beyond which eddy current loss becomes excessive.ududThe mathematical model on which the enhanced equal inductance method is based and those that have been used for performance assessment, inductance prediction and eddy-current loss evaluation have all been validated by specially designed laboratory tests carried out on prototype motors.
机译:[摘要] ud许多因素促使印刷电路轴向 udflux无刷直流(BLDC)机器的实用性日益提高。主要的是低成本电力电子设备和数字控制器的可用性以及具有成本效益的高强度永磁体。多层印刷电路技术的进步也是重要的因素。在计算机磁盘驱动器和便携式视听设备等应用中发现的现有印刷电路板电动机的额定功率通常为每分钟每千转数(krpm)几瓦。该论文项目的重点是额定功率为每千瓦数十瓦的印刷电路马达。 ud ud本论文项目的很大一部分致力于开发印刷电路定子的系统设计程序。特别地,那些过程包括允许比较几种定子线圈形状的性能的算法。已经开发出具有改进的扭矩能力的新型线圈形状。在无传感器模式下运行的BLDC电机具有诸如降低成本,提高可靠性和节省空间等优点。已经开发出了以前报道的等电感电感方法的新通用版本,该方法允许印刷电路BLDC电动机的无传感器换向降至零速并在几乎没有反向旋转的情况下启动。相电感和定子涡流损耗。足够准确的相位电感预测值使基于等电感法的无传感器换向控制下的电动机性能理论评估成为可能。拟议的涡流损耗计算方法使设计人员能够确定走线宽度,超出该宽度,涡流损耗将变得过大。 ud ud基于数学模型的增强型等效电感方法基于该模型,并且已用于性能评估,电感预测和涡流损耗评估均已通过对原型电动机进行的特殊设计的实验室测试得到验证。

著录项

  • 作者

    Gambetta Daniele Morco;

  • 作者单位
  • 年度 2009
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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