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Modelling of a prototype brushless permanent magnet DC linear stepping motor employing a flat-armature winding configuration

机译:采用扁平电枢绕组配置的原型无刷永磁直流直流踩踏电动机的建模

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This paper presents design and modelling of a prototype brushless permanent magnet dc linear stepping motor employing a flat-armature winding configuration for very low power applications. In order to validate the experimental results obtained for determining the performance of the motor a finite element analysis (FEA) method is employed to compute the flux distributions and developed thrust of the motor. The geometry of the motor, winding configurations and the design procedure are presented. The motor is designed such way that the motor core accommodate twenty four independent multi-layer coil sections wound with enameled copper wire and each layer section has 470 turns without compromising the effective air gap. The percentage accuracy of the result showed good correlation between experimental and analytical values.
机译:本文介绍了采用平筒绕组结构的原型无刷永磁直流线性步进电机的设计和建模。为了验证用于确定电动机性能的实验结果,采用有限元分析(FEA)方法来计算通量分布并开发电动机的推力。提出了电机,绕组配置和设计过程的几何形状。电动机设计出这样的方式,即电动机芯容纳用搪瓷铜线缠绕的二十四个独立的多层线圈部分,每个层部分在不损害有效气隙的情况下具有470°。结果的百分比精度显示了实验和分析值之间的良好相关性。

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