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A Novel Design of Rotor Contour for Variable Reluctance Resolver by Injecting Auxiliary Air-Gap Permeance Harmonics

机译:注入辅助气隙磁导谐波的可变磁阻旋转器转子轮廓的新颖设计

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摘要

This paper proposes a novel rotor contour design for variable reluctance (VR) resolvers by injecting auxiliary air-gap permeance harmonics. Based on the resolver model with nonoverlapping tooth-coil windings, the influence of air-gap length function is first investigated by finite element (FE) method, and the detection accuracy of designs with higher values of fundamental wave factor may deteriorate due to the increasing third order of output voltage harmonics. Further, the origins of the third harmonics are investigated by analytical derivation and FE analyses of output voltages. Furthermore, it is proved that the voltage harmonics and the detection accuracy are significantly improved by injecting auxiliary air-gap permeance harmonics in the design of rotor contour. In addition, the proposed design can also be employed to eliminate voltage tooth harmonics in a conventional VR resolver topology. Finally, VR resolver prototypes with the conventional and the proposed rotors are fabricated and tested respectively to verify the analyses.
机译:本文通过注入辅助气隙磁导谐波,为可变磁阻(VR)旋转变压器提出了一种新颖的转子轮廓设计。基于非重叠齿圈绕组的旋转变压器模型,首先通过有限元(FE)方法研究气隙长度函数的影响,随着基波系数的增大,设计的检测精度可能会降低。输出电压谐波的三阶。此外,通过分析推导和输出电压的有限元分析来研究三次谐波的起源。进一步证明,通过在转子轮廓设计中注入辅助气隙磁导谐波可以显着提高电压谐波和检测精度。另外,提出的设计还可以用于消除常规VR分解器拓扑中的电压齿谐波。最后,分别制造和测试了带有常规转子和建议转子的VR旋转变压器原型,以验证分析结果。

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