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Torque Analysis in Coaxial Magnetic Gears Considering Nonlinear Magnetic Properties and Spatial Harmonics

机译:考虑非线性磁特性和空间谐波的同轴电磁齿轮转矩分析

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摘要

A coaxial magnetic gear (CMG) consisting of an inner ring, outer ring, and flux modulator exhibits relatively large torque density at low operating cost and low noise level. To guide the selection of soft magnetic materials for the flux modulator, this paper first incorporates the Jiles-Atherton model within a finite-element (FE) framework. The influence of nonlinear magnetic properties on end-effect losses (magnetic flux leakage and fringing) is then investigated with the objective of maximizing the pullout torque. For flux modulators whose initial magnetic permeability and saturation flux density exceed certain threshold value, the pullout torque of a CMG becomes insensitive to magnetic properties and end-effect losses can be efficiently calculated from a 2-D FE model together with a constant torque reduction ratio. This paper presents a systematic torque surface method that can decouple the analysis of average torque and torque ripples. This method has been implemented to evaluate load dependence and rotation speed fluctuation of a CMG.
机译:由内圈,外圈和磁通调制器组成的同轴电磁齿轮(CMG)在较低的运行成本和较低的噪声水平下显示出相对较高的扭矩密度。为了指导选择用于磁通量调制器的软磁材料,本文首先在有限元(FE)框架内合并了Jiles-Atherton模型。然后研究非线性磁性能对最终效应损耗(磁通泄漏和边缘)的影响,目的是使拉出扭矩最大化。对于初始磁导率和饱和磁通密度超过特定阈值的磁通调制器,CMG的拉出扭矩对磁性能变得不敏感,并且可以根据二维有限元模型和恒定的扭矩减小比有效地计算出端效应损耗。本文提出了一种系统的扭矩表面方法,该方法可以使对平均扭矩和扭矩波动的分析解耦。已经实现了该方法以评估CMG的负载依赖性和转速波动。

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