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Speed estimators using stator resistance adaptation for sensorless induction motor drive

机译:使用定子电阻自适应进行无传感器感应电动机驱动的速度估算器

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摘要

The paper describes speed estimators for a speed sensorless induction motor drive with the direct torque and flux control. However, the accuracy of the direct torque control depends on the correct information of the stator resistance, because its value varies with working conditions of the induction motor. Hence, a stator resistance adaptation is necessary. Two techniques were developed for solving this problem: model reference adaptive system based scheme and artificial neural network based scheme. At first, the sensorless control structures of the induction motor drive were implemented in Matlab-Simulink environment. Then, a comparison is done by evaluating the rotor speed difference. The simulation results confirm that speed estimators and adaptation techniques are simple to simulate and experiment. By comparison of both speed estimators and both adaptation techniques, the current based model reference adaptive system estimator with the artificial neural network based adaptation technique gives higher accuracy of the speed estimation.
机译:本文介绍了采用直接转矩和磁通控制的无速度感应电动机驱动器的速度估算器。但是,直接转矩控制的精度取决于定子电阻的正确信息,因为其值会随感应电动机的工作条件而变化。因此,必须进行定子电阻匹配。解决该问题的技术有两种:基于模型参考自适应系统的方案和基于人工神经网络的方案。首先,在Matlab-Simulink环境中实现了感应电动机驱动器的无传感器控制结构。然后,通过评估转子速度差进行比较。仿真结果证实了速度估计器和自适应技术易于仿真和实验。通过比较速度估计器和两种自适应技术,当前基于模型参考的自适应系统估计器与基于人工神经网络的自适应技术可以提供更高的速度估计精度。

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