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A self-tuning, closed-loop flux observer for sensorless torque control of standard induction machines

机译:一种自调谐,闭环磁通观测器,用于标准感应电机的无传感器转矩控制

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This paper proposes a self-tuning, closed-loop flux observer which provides field-oriented torque control for induction machines without a tachometer. The observer algorithm combines the dual methods of calculating flux from the slip relation and from back-EMF estimation in order to provide a closed-loop topology. At low speeds, the observer also depends on a model of the mechanical system. The observer accuracy and robustness is augmented by a parameter-independent, accurate speed detector which analyzes magnetic saliency harmonics in the stator current. The harmonic detection scheme provides accurate rotor speed updates during steady-state operation down to 1 Hz source frequency. This additional speed information is used to tune the mechanical system parameters and the rotor resistance. The tuned observer exhibits improved dynamic performance, accurate steady-state speed control and an extended range of control near zero speed. The algorithm requires no special machine modifications and can be implemented on most existing low and medium performance drives. The closed-loop nature of the flux observer, combined with the harmonic detection scheme, provides flux and speed error feedback which significantly increases the robustness or sensorless control across the entire speed range.
机译:本文提出了一种自调谐,闭环磁通观测器,该观测器可为不带转速计的感应电机提供磁场定向的转矩控制。观察者算法结合了根据滑移关系和反电动势估计来计算通量的双重方法,以提供一个闭环拓扑。在低速时,观察者还取决于机械系统的模型。通过独立于参数的精确速度检测器来提高观察者的准确性和鲁棒性,该检测器可分析定子电流中的磁显着性谐波。谐波检测方案可在低至1 Hz的源频率的稳态运行期间提供准确的转子速度更新。该附加速度信息用于调整机械系统参数和转子电阻。调谐后的观察器具有改进的动态性能,精确的稳态速度控制和接近零速度的扩展控制范围。该算法不需要特殊的机器修改,并且可以在大多数现有的中低性能驱动器上实现。磁通观测器的闭环特性与谐波检测方案相结合,可提供磁通和速度误差反馈,从而显着提高整个速度范围内的鲁棒性或无传感器控制。

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