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Nonlinear observer based sensorless direct torque control of induction motor

机译:基于非线性观测器的感应电动机无传感器直接转矩控制

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Induction motor speed control is an area of research that has been in prominence for some time now. Recent advances in this field have made it possible to replace the DC motor by induction machines, even in applications that demand a fast dynamic response. Many industrial applications demand speed sensorless operations, due to various reasons. It is also required to strictly maintain the speed of the motor within certain permissible tolerance, irrespective of the load changes that occur in the system. Unless prior knowledge of the load characteristics is known, it is very difficult to compensate for the same. Direct torque control (DTC) of an induction motor is a popular method because of the resulting fast dynamic response of the motor, lower sensitivity to motor parameter variations and relatively low switching harmonics in the inverter. However, the present DTC approach is unsuitable for high performance applications because of the need of a speed sensor for increased accuracy, the absence of any error decay mechanism, and the requirement of prior knowledge of the load or disturbance characteristics. In this paper, a nonlinear observer is designed for the stator flux, speed and load torque estimation that will take care of the above limitations. The estimated values along with other measured states are used for the closed loop speed sensorless control operation of the induction motor. Simulations are done and the results discussed.
机译:感应电动机速度控制是一个研究领域,已经有一段时间了。该领域的最新进展使得用感应电机代替直流电动机成为可能,即使在要求快速动态响应的应用中也是如此。由于各种原因,许多工业应用都要求无速度传感器的运行。无论系统中发生的负载变化如何,也都必须将电动机的速度严格保持在一定的允许公差内。除非已知负载特性的先验知识,否则很难对其进行补偿。感应电动机的直接转矩控制(DTC)是一种流行的方法,原因是电动机具有快速的动态响应,对电动机参数变化的敏感性较低以及逆变器中的开关谐波相对较低。然而,由于需要速度传感器来提高准确性,不存在任何误差衰减机制以及需要对负载或干扰特性有先验知识,因此当前的DTC方法不适用于高性能应用。在本文中,为观察定子磁通,速度和负载转矩而设计了一个非线性观测器,它将考虑上述限制。估计值与其他测量状态一起用于感应电动机的无速度闭环控制操作。进行了仿真并讨论了结果。

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