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Sensorless speed control of PMSM via adaptive interconnected observer

机译:通过自适应互连观测器对PMSM进行无传感器速度控制

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摘要

In this article, a robust sensorless speed observer-controller scheme for a surface permanent magnet synchronous motor (PMSM) is proposed. First-of-all, following preliminary results in the framework of the induction motor that is less sensible to the position estimation error, an adaptive high gain interconnected observer is designed. It is only supplied by the electrical measurement: the motor currents and voltages. This observer estimates the rotor speed and position, the stator resistance and the load torque. A nonlinear backstepping controller is developed. The above observer is associated with this controller and the complete scheme practical stability proof is given. The overall system is tested by simulation in the framework of an industrial benchmark with a trajectory that particularly checks the motor unobservability condition. Some robustness tests have been carried out. The controller-observer scheme shows good performances in spite of the uncertainties and the unknown load torque.
机译:在本文中,提出了一种鲁棒的表面永磁同步电动机(PMSM)的无传感器速度观测器-控制器方案。首先,根据感应电动机框架中对位置估计误差不太敏感的初步结果,设计了一个自适应高增益互连观测器。它仅由电气测量值提供:电动机电流和电压。该观察者估计转子速度和位置,定子电阻和负载转矩。开发了非线性反推控制器。上面的观察者与此控制器相关联,并给出了完整的方案实用的稳定性证明。整个系统通过工业基准框架内的仿真测试,其运行轨迹特别可检查电机的不可观察性状况。已经进行了一些鲁棒性测试。尽管存在不确定性和未知的负载转矩,但控制器-观察器方案仍显示出良好的性能。

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