A reduced-order position observer with stator-resistance adaptation is proposed for motion-sensorless permanent-magnet synchronous motor drives. A general analytical solution for the stabilizing observer gain and stability conditions for the stator-resistance adaptation are derived. Under these conditions, the local stability of the position and stator-resistance estimation is guaranteed at every operating point except the zero frequency, if other motor parameters are known. The proposed observer design is experimentally tested using a 2.2-kW motor drive; stable operation at very low speeds under different loading conditions is demonstrated.Peer reviewe
This paper deals with reduced-order flux observers with stator-resistance adaptation for speed-senso...
Two back-electromotive-force-based position observers are compared for motion-sensorless synchronous...
This paper deals with the speed and position estimation of interior permanent-magnet synchronous mot...
A reduced-order position observer with stator-resistance adaptation is proposed for motion-sensorles...
This paper deals with reduced-order observers with stator-resistance adaptation for motion-sensorles...
A reduced-order position observer with stator-resistance adaptation is proposed for motion-sensorles...
A reduced-order position observer with stator-resistance adaptation is applied for motion-sensorless...
A reduced-order position observer with stator-resistance adaptation is proposed for motion-sensorles...
This paper deals with reduced-order flux observers with stator-resistance adaptation for speed-sensor...
A back-electromotive-force-based reduced-order position observer with stator-resistance adaptation i...
A back-EMF-based reduced-order position observer with stator-resistance adaptation is analyzed for m...
Two back-EMF-based position observers are compared for motion-sensorless synchronous reluctance moto...
A back electromotive force-based position observer for motion-sensorless synchronous reluctance moto...
A back-EMF-based position observer for motion-sensorless synchronous reluctance motor (SyRM) drives ...
A back-EMF-based position observer for motion-sensorless synchronous reluctance motor (SyRM) drives ...
This paper deals with reduced-order flux observers with stator-resistance adaptation for speed-senso...
Two back-electromotive-force-based position observers are compared for motion-sensorless synchronous...
This paper deals with the speed and position estimation of interior permanent-magnet synchronous mot...
A reduced-order position observer with stator-resistance adaptation is proposed for motion-sensorles...
This paper deals with reduced-order observers with stator-resistance adaptation for motion-sensorles...
A reduced-order position observer with stator-resistance adaptation is proposed for motion-sensorles...
A reduced-order position observer with stator-resistance adaptation is applied for motion-sensorless...
A reduced-order position observer with stator-resistance adaptation is proposed for motion-sensorles...
This paper deals with reduced-order flux observers with stator-resistance adaptation for speed-sensor...
A back-electromotive-force-based reduced-order position observer with stator-resistance adaptation i...
A back-EMF-based reduced-order position observer with stator-resistance adaptation is analyzed for m...
Two back-EMF-based position observers are compared for motion-sensorless synchronous reluctance moto...
A back electromotive force-based position observer for motion-sensorless synchronous reluctance moto...
A back-EMF-based position observer for motion-sensorless synchronous reluctance motor (SyRM) drives ...
A back-EMF-based position observer for motion-sensorless synchronous reluctance motor (SyRM) drives ...
This paper deals with reduced-order flux observers with stator-resistance adaptation for speed-senso...
Two back-electromotive-force-based position observers are compared for motion-sensorless synchronous...
This paper deals with the speed and position estimation of interior permanent-magnet synchronous mot...