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Prediction of torque and inductance displacement characteristics of asymmetrically slotted variable-reluctance motors using a simplified model for numerical field solution

机译:用数值模型的简化模型预测不对称开槽变磁阻电动机的转矩和电感位移特性

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摘要

For prediction of static and dynamic performance of doubly-salient motors, it is essential to know their flux linkage-position-excitation characteristics and also the static torque characteristics. At the design stage determination of these characteristics presents difficulties because of highly nonlinear behavior of the magnetic circuit. It is possible to use numerical field solution of the complete motor to obtain this information. This, however, requires expertise on a professional program and may be expensive if used to search for the best design. This paper shows that a reduced model can be used to obtain the desired information accurately. It is also shown that in fact obtaining field solutions just for a pair of teeth is enough for accurately predicting the flux linkage and torque characteristics of a motor. The approach introduced here makes possible searching for an optimum design (even on a PC) for maximizing average torque or reducing noise and vibration problems, since the effort for producing the model and computation time are greatly reduced.
机译:为了预测双凸极电机的静态和动态性能,必须了解它们的磁链位置激励特性以及静态转矩特性。在设计阶段,由于磁路的高度非线性行为,确定这些特性会遇到困难。可以使用整个电动机的数值场解来获取此信息。但是,这需要专业程序的专业知识,如果用于搜索最佳设计,则可能会很昂贵。本文表明,可以使用简化模型来准确获得所需信息。还表明,实际上仅获得一对齿的磁场解就足以准确预测电动机的磁链和转矩特性。由于大大减少了产生模型的工作量和计算时间,因此此处介绍的方法(即使在PC上)也可以寻求最佳设计,以最大程度地提高平均转矩或减少噪音和振动问题。

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