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Design, fabrication and testing of a stacked variable-reluctance motor

机译:堆叠式可变磁阻电动机的设计,制造和测试

摘要

A new type of variable-reluctance motor with axially stacked stator and rotor plates is explored in this thesis. This stacked variable-reluctance motor (SVRM) has mechanically parallel air gaps, carrying magnetic flux in series. Magnetic models are developed to predict the maximum and minimum flux linkage of the motor, as well as the average torque over an electrical cycle. A geometric optimization is carried out using a combination of the Monte Carlo method and the simulated annealing method on a prototype, designed as a hip motor for a cheetah like robot. A one-phase 56 polepair prototype is designed and constructed to confirm the theory. The prototype can maintain its two 100 pm axial air gaps over a 5 inch diameter. The prototype, given all its practical constraints, produces 2 Nm of torque at 30 A phase current. After material property adjustments, the model predictions match well with the experimental performance of the prototype. Another round of optimization is done using the modified material properties, the best torque-to-mass ratio found for a ferrite motor with no more than 100 pole pairs is 8.4 Nm/kg. It is concluded that ferrite's flux carrying capacity is insufficient for high toque-to-mass ratio motors, given the requirements of the hip motor. A steel SVRM can have torque-to-mass ratio as high as 35.7 Nm/kg, but is restricted to low speed operation due to the slow magnetic diffusion.
机译:本文研究了一种新型的轴向与定子和转子板叠置的变磁阻电动机。这种堆叠式可变磁阻电机(SVRM)具有机械平行的气隙,并带有串联的磁通量。开发了磁模型来预测电动机的最大和最小磁链,以及整个电周期的平均转矩。几何优化是结合使用蒙特卡罗方法和模拟退火方法对原型设计的,该原型设计为像猎豹一样的机器人的髋部马达。设计并构造了一个单相56极对原型,以证实该理论。原型可以在5英寸直径上保持两个100 pm的轴向气隙。考虑到所有实际约束,该原型在30 A相电流下产生2 Nm的扭矩。调整材料特性后,模型预测与原型的实验性能非常匹配。使用修改后的材料特性进行另一轮优化,对于不超过100个极对的铁氧体电机,发现最佳的转矩质量比为8.4 Nm / kg。结论是,考虑到髋部电动机的要求,铁氧体的通量承载能力不足以用于高转矩质量比电动机。钢SVRM的扭矩/质量比可高达35.7 Nm / kg,但由于磁扩散缓慢,因此仅限于低速运行。

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