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首页> 外文期刊>Industry Applications, IEEE Transactions on >Magnetic Suspension Performance of a Bearingless Brushless DC Motor for Small Liquid Pumps
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Magnetic Suspension Performance of a Bearingless Brushless DC Motor for Small Liquid Pumps

机译:小型液体泵用无轴承无刷直流电动机的磁悬浮性能

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摘要

This paper presents the experiment results from the testing of a magnetic suspension system in a bearingless brushless dc motor. This machine is suitable for use in small liquid pumps. The bearingless motor structure, the principle of the suspension force generation, and the magnetic suspension control strategy are proposed by the author. A prototype bearingless brushless dc motor is designed using computed results from a finite-element method simulation of the system. The simulation is experimentally verified using a prototype machine where the rotor is successfully suspended without mechanical contact when it drives a liquid pump at the maximum rotational speed of 2200 r/min and the maximum fluid flow of 8.2 L/min. This result shows that the proposed bearingless brushless dc motor is suitable as the drive for small liquid pumps.
机译:本文介绍了无轴承无刷直流电动机中的磁悬浮系统测试的实验结果。该机器适用于小型液体泵。作者提出了无轴承电动机的结构,产生悬浮力的原理以及磁悬浮控制策略。利用系统有限元方法仿真的计算结果设计了无轴承无刷直流电动机原型。使用原型机对仿真进行了实验验证,其中,当转子以2200 r / min的最大转速和8.2 L / min的最大流体驱动液泵时,转子成功悬挂且没有机械接触。该结果表明,所提出的无轴承无刷直流电动机适合作为小型液体泵的驱动器。

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