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Sliding-Mode MRAS based Encoderless Predictive Torque Control for Induction Machine

机译:基于滑模MRAS的感应电机无编码器预测转矩控制

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This paper presents a sliding-mode (SM) model reference adaptive system (MRAS) observer for predictive torque control (PTC) in the induction machine drives. The PTC scheme is one of the most promising control strategy for electrical drives. However, its performance is constrained due to the accuracy of parameter and speed estimation. The proposed SM MRAS is employed to estimate rotor speed for PTC. The dominant feature of the methodology is that the adjustable model is modified by a sliding manifold in accordance with the error signal. Compared with conventional MRAS, the proposed method is more robust and easily tuned. To enhance robustness of the PTC scheme to the parameter variation, the extended rotor resistance compensation is employed in the estimator. In this paper, the experimental results confirm that the proposed method achieves fast dynamic performance and strong robustness.
机译:本文提出了一种用于感应电机驱动器中的预测转矩控制(PTC)的滑模(SM)模型参考自适应系统(MRAS)观测器。 PTC方案是电气驱动器最有希望的控制策略之一。但是,由于参数和速度估计的准确性,其性能受到了限制。建议的SM MRAS用于估算PTC的转子速度。该方法的主要特征是可调节模型由滑动歧管根据误差信号进行修改。与传统的MRAS相比,该方法更加健壮且易于调整。为了增强PTC方案对参数变化的鲁棒性,在估算器中采用了扩展的转子电阻补偿。在本文中,实验结果证实了该方法具有快速的动态性能和强大的鲁棒性。

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