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A Modified Closed-Loop Voltage Model Observer Based on Adaptive Direct Flux Magnitude Estimation in Sensorless Predictive Direct Voltage Control of an Induction Motor

机译:一种改进的闭环电压模型观测器,基于感应电动机无传感器预测直流控制中的自适应直流磁通幅度估计

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摘要

Voltage model observer is a simple and economical technique for flux estimation in induction motor sensorless drives. However, it shows poor performance in low-speed regions. Therefore, in most cases, the use of this observer is limited. On the other hand, using a simple but accurate estimator is important when the control method is sophisticated and requires heavy computation. This issue will be important in predictive control more than the other methods because the accuracy of the prediction is dependent on the flux estimation. In this paper, a modified closed-loop technique based on voltage model observer is proposed for flux estimation. The feedback loop is supported by the proposed model reference adaptive system direct flux magnitude estimation technique. The dependence of the feedback loop on the stator resistance is eliminated. Therefore, the drift error will be avoided. This will allow the method to withstand the high stator resistance error even at low speeds. Also, a new Lyapunov-based technique for the stator resistance estimation via reduced-order model is proposed. By using the proposed observer, the predictive direct voltage control technique is used as the control method in order to achieve a control method that requires low computation. The proposed method is validated through the experimental results.
机译:电压模型观测器是一种简单且经济的感应电动机传感器驱动器磁通估计技术。然而,它表现出低速区域的性能差。因此,在大多数情况下,该观察者的使用是有限的。另一方面,当控制方法复杂并且需要重量计算时,使用简单但精确的估计器很重要。在预测控制中,此问题比其他方法更重要,因为预测的准确性取决于磁通估计。本文提出了一种基于电压模型观测器的改进的闭环技术,用于助焊剂估计。所提出的模型参考自适应系统直接通量幅度估计技术支持反馈回路。消除了反馈环对定子电阻的依赖性。因此,将避免漂移误差。这将使该方法即使在低速下也能承受高定子电阻误差。此外,提出了一种基于Lyapunov的基于Lyapunov的技术,用于通过缩小阶模型进行定子电阻估计。通过使用所提出的观察者,预测的直接电压控制技术用作控制方法,以实现需要低计算的控制方法。所提出的方法通过实验结果验证。

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