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Speed-Sensorless Induction Machine Control in the Field-Weakening Region Using Discrete Speed-Adaptive Full-Order Observer

机译:离散速度自适应全阶观测器在弱磁场区域的无速度传感器感应电机控制

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摘要

This paper presents a novel field-weakening strategy combined with a modified discrete speed-adaptive full-order observer to improve the performance of speed-sensorless induction machine drives in the field-weakening region. The robust field-weakening controller regulates the field current and the clamp of torque current according to the machine operating mode. Compared with the conventional inverse proportion to speed method and optimal flux level calculation method, the proposed controller shows the superiorities over maximum torque selection and parameter robustness. Moreover, a discrete speed-adaptive full-order observer is designed to estimate the rotor speed. However, when the machine operates at high speed, two poles of the conventional forward Euler approximation-based observer are outside the unit circle, which leads to system instability. To solve the conflict between stability, accuracy, and computational burden, a modified Euler approximation is used to discretize the observer. A comparative study of different approximations substantiates the presented approximation. The effectiveness of the proposed solution is demonstrated experimentally on an industrial induction machine drive.
机译:本文提出了一种新颖的弱磁场策略,并结合了改进的离散速度自适应全阶观测器,以改善弱磁场区域中无速度传感器感应电机驱动器的性能。强大的弱磁场控制器根据机器的运行模式调节励磁电流和转矩电流钳位。与常规的反比例速度法和最佳磁通水平计算方法相比,该控制器在最大转矩选择和参数鲁棒性方面具有优势。此外,设计了离散速度自适应全阶观测器来估计转子速度。但是,当机器高速运行时,传统的基于前欧拉近似的观测器的两个极点在单位圆之外,从而导致系统不稳定。为了解决稳定性,准确性和计算负担之间的冲突,使用了改进的欧拉近似来离散化观察者。对不同近似值的比较研究证实了所提出的近似值。在工业感应电机驱动器上通过实验证明了所提出解决方案的有效性。

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