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Improvement of sensorless speed control for nonsalient type axial gap self-bearing motor using sliding mode observer

机译:滑动模式观测器对非凸型轴向间隙自轴承电动机的无传感器速度控制的改进

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This paper presents an improvement of sensorless speed vector control for a nonsalient type axial gap self bearing motor (AGBM), in which rotor speed and position are estimated by using sliding mode observer with full mathematical model. The approach is based on the estimation of the motor back-EMF (or induced voltage) through a sliding mode observer with help of reference voltages, measured stator currents and measured displacement. In order to achieve an accurate estimation of the rotor speed and position, an adaptive gain of the sliding mode controller is proposed. Experiment was implemented based on dSpace1104 with two three phase inverters. Results confirm that the sensorless drive for AGBM achieved at the average and high speed range, so further work is being continued to improve the experiment for this proposal at low speed range.
机译:本文提出了一种针对非凸型轴向间隙自轴承电动机(AGBM)的无传感器速度矢量控制的改进方法,该方法通过使用具有完整数学模型的滑模观测器估算转子速度和位置。该方法基于在参考电压,测得的定子电流和测得的位移的帮助下,通过滑模观察器对电机反电动势(或感应电压)的估算。为了实现对转子速度和位置的精确估计,提出了滑模控制器的自适应增益。基于带有两个三相逆变器的dSpace1104进行了实验。结果证实,AGBM的无传感器驱动已在平均和高速范围内实现,因此正在继续做进一步的工作以改进该建议在低速范围内的实验。

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