Speed sensorless torque and flux control of induction motor

K. Jezernik, G. Edelbaher
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引用次数: 0

Abstract

Due to its rigidness, maintenance free operation and many other advantages, the squirrel cage induction motor is the most widely used electrical motor in industrial applications. However, due to its highly coupled nonlinear structure it has certain limitations in sensorless applications in servodrives. This is due to the fact that the currently used control schemes like field oriented or direct torque control, errors occur due to the parameters variation, integral drift and noise. Those errors can be overcome with the use of the advanced parameter estimators and observers, however the speed sensorless operation, especially in the low speed region still presents a problem. Novel induction motor speed sensorless torque control is proposed. The control is quite different than the conventional field-oriented or direct torque control. First, the produced torque is explicitly continuous output variable of control. Second, a new rotor flux observer, which allows speed sensorless operation of IM by low and zero speed, was developed. A new stator and rotor flux controller/observer based on continuous sliding mode and Lyapunov theory are developed. The reference tracking performance of torque and rotor flux is demonstrated in series of transient characteristics by simulation and experimental results.
异步电动机无速度传感器转矩和磁链控制
鼠笼式异步电动机由于其刚性、免维护运行等诸多优点,是工业应用中应用最广泛的电动机。然而,由于其高度耦合的非线性结构,在伺服驱动中的无传感器应用有一定的局限性。这是由于目前使用的磁场定向或直接转矩控制等控制方案,由于参数变化,积分漂移和噪声而产生误差。使用先进的参数估计器和观测器可以克服这些误差,但是无速度传感器的运行,特别是在低速区域仍然存在问题。提出了一种新型无速度传感器的异步电动机转矩控制方法。该控制与传统的磁场定向或直接转矩控制有很大不同。首先,所产生的转矩是明确的连续控制输出变量。其次,研制了一种新型转子磁链观测器,实现了无速度传感器的低速和零速运行。提出了一种基于连续滑模和李亚普诺夫理论的定子和转子磁链控制器/观测器。通过仿真和实验结果验证了转矩和转子磁链的参考跟踪性能。
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