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Adaptive speed control for induction motors based on a semi-current-fed model

机译:基于半电流馈电模型的感应电机自适应速度控制

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摘要

This paper presents a semi-current-fed concept and a virtual desired variable synthesis for induction motor control. First, the traditional ideal current-loop assumption is relaxed. The relaxed assumption, considering more practical situations, allows a bounded stator voltage and a finite absolute-integral of current tracking error. From this novel concept, a semi-current-fed model for induction motors is used for the design. Both unknown rotor resistance and torque load are considered along with immeasurable rotor flux. To cope with the problems, we use a virtual desired variable approach to synthesize the control law. In the absence of a flux sensor and not using a flux observer, the asymptotic speed tracking is ensured without needing the persistent excitation condition. However, if the controlled system is persistently excited, an optimal torque control is additionally achieved. In addition to the theoretical proof, experimental results show the expected tracking performance.
机译:本文介绍了一个半电流馈电概念和用于感应电动机控制的虚拟所需的变量合成。 首先,轻松传统的理想电流循环假设。 考虑更实际情况,放松的假设允许有界定子电压和电流跟踪误差的有限绝对积分。 从这种新颖的概念来看,用于设计的半电流供给电动机模型。 既有未知的转子电阻和扭矩载荷也被认为是不可估量的转子通量。 为了应对问题,我们使用虚拟所需的可变方法来综合控制法。 在没有磁通传感器而不使用磁通检测器的情况下,确保了无需持久激励条件的渐近速度跟踪。 然而,如果受控系统持续激发,则另外实现了最佳扭矩控制。 除了理论证明外,实验结果还显示了预期的跟踪性能。

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