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Sliding-Mode Control for Speed Sensorless Induction Machine Drive Using an Adaptive Nonlinear Rotor Flux Observer

机译:使用自适应非线性转子通量观测器的速度无传感器感应机驱动的滑模控制

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This paper presents a new adaptive rotor flux observer for speed sensorless induction motor (IM) drives which provides the rotor speed, stator and rotor resistances estimations simultaneously. The rotor speed and rotor flux controllers are designed based on combination of input-output feed back linear zing, Sliding-Mode (SM) control and Linear Quadratic (LQ) feed back control. It will be shown that the composite rotor speed and rotor flux controllers in combination with adaptive flux observer guarantee the system stability and robustness against the parameter variations and external loud disturbance under system Persistency of excitation (PE) condition. The PE condition is satisfied if a low frequency ac signal is superimposed to the rotor reference flux under motor loading operating. The validity of the proposed method is supported by simulation and experimental results.
机译:本文介绍了一种用于同时提供转子速度,定子和转子电阻估计的速度传感器感应电动机(IM)驱动器的新型自适应转子通量观测器。转子速度和转子磁通控制器是基于输入输出馈回线性Zing,滑动模式(SM)控制和线性二次(LQ)馈电控制的组合而设计的。将表明,复合转子速度和转子通量控制器与自适应通量观测器组合,保证了系统稳定性和稳健性,以防止激励(PE)条件的系统持久性下的参数变化和外部响亮的干扰。如果低频AC信号叠加到电动机负载操作下的转子参考通量,则满足PE条件。通过模拟和实验结果支持所提出的方法的有效性。

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