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Axial position and speed vector control of the inset permanent magnet axial gap type self bearing motor

机译:插入永磁轴向间隙型自轴承电机的轴向位置和速度矢量控制

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摘要

Magnetic bearing motors have many advantages such as no friction loss, no abrasion, lubrication-free quality, very high speed and so forth. However, they are not widely used due to their high cost, complex control and large size. In order to solve these problems, a self-bearing motor is a reasonable trend in current researches. This paper will introduce an inset permanent magnet type axial gap self bearing motor, which is an electrical combination of an axial thrust bearing and an axial flux motor, as well as the method of controlling axial position and rotating speed of the motor. First, the axial force and the motoring torque are analyzed theoretically and then the control method is derived. In order to confirm the proposed technique, a motor has been made and tested. The experimental results confirm that the motor works stably with the proposed vector control, and the rotating torque and the axial force can be controlled independently.
机译:磁性轴承电机具有许多优点,如无摩擦损失,无磨损,无润滑的质量,非常高速等。然而,由于它们的高成本,复杂的控制和大尺寸,它们不会被广泛使用。为了解决这些问题,自轴承电机是当前研究的合理趋势。本文将引入插入永磁型轴向间隙自轴承电动机,其是轴向推力轴承和轴向通量电动机的电气组合,以及控制电动机轴向位置和旋转速度的方法。首先,理论上分析轴向力和电动扭矩,然后导出控制方法。为了确认所提出的技术,已经进行了一种电机并测试。实验结果证实,电动机与所提出的矢量控制稳定地工作,并且可以独立地控制旋转扭矩和轴向力。

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