电动马达无感测器数位控制之设计、开发与实现

A. H. Dida, M. Bourahla, H. Ertan, M. Benghanem
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引用次数: 2

摘要

大多数工业应用在过程中使用扭矩,速度和/或位置的变化,需要非常严格的规格。在电机驱动领域,消除机械式速度传感器可以带来经济效益,提高运行安全性。因此,人们试图通过在数字信号处理器(DSP)中实现一种利用电流和电压采集进行速度估计的算法来实现速度测量。这些方法都可以在低成本的DSP上实现。本工作的目标是设计、开发和实现电动马达的无传感器速度数字控制。根据观察到的转子磁链和滑差脉动,计算电机的位置和机械转速。该算法在Microchip的DSPic30f芯片上实现。
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Design, development and implementation of sensorless digital control of an electric motorization
The most industrial applications use the variation of the torque, speed and/or position in process, for which extremely severe specifications are needed. In the field of the drive of the electric machines, the elimination of the mechanical speed sensor can present an economic interest and improve safety of operation. One thus tries to make fulfill the speed measurement by implementing in a Digital signal processor (DSP) an algorithm of speed estimation using the current and voltage acquisition. Those methods become realizable on DSP of low costs. The goal of this work is to design, develop and implement of sensorless speed digital control of an electric motorization. The position and the mechanical speed of motor are calculated according to: observed rotor flux and the slip pulsation. The algorithm is implemented in DSPic30f of Microchip.
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