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Influence of mechanical faults on the position error of an axial flux brushless resolver without rotor windings

机译:机械故障对无转子绕组的轴向磁通无刷旋转变压器位置误差的影响

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摘要

The axial flux brushless resolver without rotor windings is newly proposed resolver that has the advantages of variable reluctance (VR) resolvers for having no winding on rotor and also, its manufacturing process is much simpler than that of VR resolvers. The influence of different mechanical faults on the position error of the studied resolver is discussed. Different types of eccentricities, inclined rotor and run out error independently and simultaneously are studied using 3D time stepping finite-element method. The results show the maximum position error is related to the resolver under static eccentricity (SE), so an optimised rotor is proposed for the studied resolver to overcome this challenge. Finally, the optimised resolver is built and the experimental tests are done to validate the simulation results.
机译:无转子绕组的轴向磁通无刷旋转变压器是一种新近提出的旋转变压器,它具有可变磁阻(VR)旋转变压器的优点,即转子上没有绕组,并且其制造过程比VR旋转变压器简单得多。讨论了不同机械故障对所研究旋转变压器位置误差的影响。使用3D时间步长有限元方法,分别并同时研究了不同类型的偏心距,倾斜转子和跳动误差。结果表明,最大位置误差与静态偏心率(SE)下的旋转变压器有关,因此,针对研究的旋转变压器,提出了一种优化的转子来克服这一挑战。最后,构建了优化的解析器,并进行了实验测试以验证仿真结果。

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