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Simple and robust speed sensorless vector control of induction motor using stator current based MRAC

机译:基于定子电流的MRAC的感应电动机简单,鲁棒的无速度传感器矢量控制

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摘要

A novel rotor speed estimation method using model reference adaptive control (MRAC) is proposed to improve the performance of a sensorless vector controller. In MRAC methods, state variables, such as rotor flux and back EMF are estimated in a reference model and then compared with state variables estimated by using an adjustable model. The difference of these state variables is then used in an estimation of rotor speed. We propose a new MRAC method that uses the stator current as the state variable for estimating the speed. In conventional MRAC methods, the difference between state variables has the unclear relationship with the speed estimation error. But, in the proposed method, the stator current error is represented as a function of the first degree for the error value in the speed estimation. Therefore, the proposed method can produce a fast speed estimation and is robust to variations in the parameter error. In addition, the proposed method offers a considerable improvement in the performance of a sensorless vector controller at a low speed. The superiority of the proposed method is verified by simulation and experiments in a low speed region and at zero-speed.
机译:为了提高无传感器矢量控制器的性能,提出了一种新的基于模型参考自适应控制的转子速度估计方法。在MRAC方法中,状态变量(例如转子磁通和反电动势)在参考模型中估算,然后与使用可调模型估算的状态变量进行比较。然后将这些状态变量的差用于估算转子速度。我们提出了一种新的MRAC方法,该方法使用定子电流作为状态变量来估计速度。在传统的MRAC方法中,状态变量之间的差异与速度估计误差之间的关系不清楚。但是,在提出的方法中,定子电流误差表示为速度估算中误差值的一阶函数。因此,所提出的方法可以产生快速的速度估计并且对于参数误差的变化是鲁棒的。另外,所提出的方法在低速下无传感器矢量控制器的性能上提供了相当大的改进。通过在低速区域和零速下的仿真和实验验证了该方法的优越性。

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