On speed control of induction motors
نویسندگان
چکیده
In a recent paper 3] Espinosa and Ortega presented an output feedback globally stable speed tracking controller for induction motors. An important feature of the scheme is that it does not require state observers, thus reducing the computational burden, a critical limiting factor in physical implementations. The performance of the scheme is limited by the fact that the convergence rate of the speed tracking errors is determined by the natural mechanical damping of the motor. In this brief note we overcome this drawback and show that by simple linear ltering of the speed tracking error we can inject mechanical damping to the closed loop. This allows us to improve the transient performance of the scheme in position and speed tracking applications without signiicantly increasing the computational requirements, while preserving the global stability properties. Further, it is shown that if the inverter can be modelled as a current source and the desired speed is constant, our passivity-based scheme exactly reduces to the well known indirect eld-oriented control scheme, hence providing a solid theoretical foundation to this popular control strategy.
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عنوان ژورنال:
- Automatica
دوره 32 شماره
صفحات -
تاریخ انتشار 1996