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Fully levitated rotor magnetically suspended by two polepair separated conical motors.

机译:完全悬浮的转子由两个极对分开的锥形电动机磁悬浮。

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摘要

In some high performance applications it is desired to suspend a motor without mechanical bearings. Some reasons for such a requirement would be high speed capability, lack of access to perform maintenance, or the motor is in an environment which poses a difficulty for conventional bearings, such as extreme temperatures and pressures.;While separate magnetic bearings and motors can be used in these high performance applications, they suffer some drawbacks. First they increase the axial length of the rotor they support. Secondly using separate systems increases the weight of the machine, because each function has to be sized for their required peak power. Finally separate systems lead to more parts, which increases cost and complexity. It is these issues that have driven the need for a bearingless motor. A bearingless motor is a motor which is capable of producing lateral forces which are used to suspend the rotor.;Currently bearingless motors have separate windings for motoring and magnetic levitation. These motors fully utilize their common stator iron, however winding space is still dedicated to either the levitation or rotation functions. Furthermore these motors are capable of only providing forces in one radial plane, in the case of radial gap motors, or one axial direction, in the case of axial gap motors.;The motors, conceived and presented in this thesis, are wound without internally connecting the pole-pairs. Force is controlled by varying rotor reference frame d-axis current to each pole-pair. Therefore all of the windings can produce torque or levitation force, depending on need. Furthermore the conical shape of the motor allows forces to be created in both radial and axial directions. Therefore a pair of these motors allows full 5-axis levitation.;This thesis presents the theory, simulation and lab results of a fully levitated rotor by two of these conical bearingless motors. The prototype motors presented in this thesis are sized for a high speed flywheel energy storage application. These bearingless motors are simulated with magnetic circuit models, Matlab Simulink control models, and finite element analysis. Measurements taken on the prototype system verify the theory and simulation results.
机译:在某些高性能应用中,希望在没有机械轴承的情况下悬挂电动机。出现这种要求的一些原因是高速能力,无法进行维护或电动机处于常规轴承难以承受的环境中,例如极端温度和压力。在这些高性能应用中使用它们会遇到一些缺点。首先,它们增加了所支撑转子的轴向长度。其次,使用单独的系统会增加机器的重量,因为每种功能都必须根据其所需的峰值功率来确定大小。最后,单独的系统导致更多的零件,这增加了成本和复杂性。正是这些问题推动了对无轴承电机的需求。无轴承电动机是能够产生用于悬挂转子的侧向力的电动机。当前,无轴承电动机具有用于电动机和磁悬浮的单独绕组。这些电动机完全利用了它们的通用定子铁,但是绕组空间仍然专用于悬浮或旋转功能。此外,对于径向间隙电动机,这些电动机只能在一个径向平面上提供力;对于轴向间隙电动机,这些电动机只能在一个轴向上提供力。连接极对。通过改变每个极对的转子参考系d轴电流来控制力。因此,根据需要,所有绕组都可以产生转矩或悬浮力。此外,电动机的锥形形状允许在径向和轴向方向上产生力。因此,一对这样的电动机可以实现全5轴悬浮。本论文介绍了其中两个锥形无轴承电动机构成的完全悬浮转子的理论,仿真和实验结果。本文介绍的原型电动机的尺寸适用于高速飞轮储能应用。这些无轴承电机通过磁路模型,Matlab Simulink控制模型和有限元分析进行仿真。对原型系统进行的测量验证了理论和仿真结果。

著录项

  • 作者

    Kascak, Peter E.;

  • 作者单位

    Case Western Reserve University.;

  • 授予单位 Case Western Reserve University.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 447 p.
  • 总页数 447
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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