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Levitation Performance of Two Opposed Permanent Magnet Pole-Pair Separated Conical Bearingless Motors

机译:两个相对的永磁极-对分离的圆锥形无轴承电动机的悬浮性能

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摘要

In standard motor applications, rotor suspension with traditional mechanical bearings represents the most economical solution. However, in certain high performance applications, rotor suspension without contacting bearings is either required or highly beneficial. Examples include applications requiring very high speed or extreme environment operation, or with limited access for maintenance. This paper expands upon a novel bearingless motor concept, in which two motors with opposing conical air-gaps are used to achieve full five-axis levitation and rotation of the rotor. Force in this motor is created by deliberately leaving the motor s pole-pairs unconnected, which allows the creation of different d-axis flux in each pole pair. This flux imbalance is used to create lateral force. This approach is different than previous bearingless motor designs, which require separate windings for levitation and rotation. This paper examines the predicted and achieved suspension performance of a fully levitated prototype bearingless system.
机译:在标准电动机应用中,采用传统机械轴承的转子悬架是最经济的解决方案。但是,在某些高性能应用中,要求转子悬架而不接触轴承是非常有益的。示例包括需要非常高的速度或在极端环境下运行,或维护访问受限的应用。本文扩展了一种新颖的无轴承电动机概念,其中使用两个具有相对的锥形气隙的电动机来实现转子的完整五轴悬浮和旋转。通过故意使电动机的极对保持未连接状态来产生该电动机中的力,从而可以在每个极对中创建不同的d轴磁通。这种磁通不平衡用于产生横向力。这种方法不同于以前的无轴承电机设计,后者需要单独的绕组以进行悬浮和旋转。本文研究了完全悬浮的原型无轴承系统的预期和实现的悬挂性能。

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