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Torque analysis of axial flux PM type eddy current brake based on analytical field computations

机译:基于解析磁场计算的轴向磁通PM型涡流制动器转矩分析

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This paper deals with torque analysis of axial flux permanent magnet (AFPM) type eddy current brake (ECB) based on analytical field computation. On the basis of a magnetic vector potential and a two-dimensional (2-D) polar coordinate system, analytical solutions for normal and tangential flux density due to permanent magnet (PM) considering eddy current effect are obtained. And then, using derived analytical field solutions, braking torque and normal force characteristics according to rotor speed are also predicted. A three-dimensional (3-D) finite element (FE) analysis is employed to confirm the validity of analyses. Finally, this paper investigates influence of design parameters on the performances of the AFPM type ECB.
机译:基于解析磁场计算,对轴向磁通永磁体(AFPM)型涡流制动器(ECB)进行转矩分析。基于磁矢量势和二维(2-D)极坐标系,获得了考虑涡流效应的永磁体(PM)引起的法向和切向磁通密度的解析解。然后,使用导出的解析场解,还可以根据转子速度预测制动转矩和法向力特性。使用三维(3-D)有限元(FE)分析来确认分析的有效性。最后,本文研究了设计参数对AFPM型ECB性能的影响。

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