Two back-electromotive-force-based position observers are compared for motion-sensorless synchronous motor drives: the reduced-order observer and the adaptive full-order observer. A stabilizing gain is proposed for the adaptive full-order observer, which guarantees the local stability of the closed-loop system, if the motor parameters are known. Equations for the steady-state position error and for the linearized estimation-error dynamics under erroneous parameters are derived, and the robustness of the two observers against parameter errors is analyzed and compared. The observers are experimentally evaluated using a 6.7-kW synchronous reluctance motor drive in low-speed operation and under parameter errors. The gain selection of the reduce...
A reduced-order position observer with stator-resistance adaptation is proposed for motion-sensorles...
A reduced-order position observer with stator-resistance adaptation is proposed for motion-sensorles...
A back electromotive force-based position observer for motion-sensorless synchronous reluctance moto...
Two back-EMF-based position observers are compared for motion-sensorless synchronous reluctance moto...
A back-electromotive-force-based reduced-order position observer with stator-resistance adaptation i...
A back-electromotive-force-based reduced-order position observer with stator-resistance adaptation i...
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...
A back electromotive force-based position observer for motion-sensorless synchronous reluctance moto...
A back electromotive force-based position observer for motion-sensorless synchronous reluctance moto...
This paper deals with the speed and position estimation for synchronous reluctance motors (SyRMs) an...
A back-electromotive-force-based position observer for motion-sensorless synchronous reluctance moto...
A reduced-order position observer with stator-resistance adaptation is applied for motion-sensorless...
A back-electromotive-force-based position observer for motion-sensorless synchronous reluctance moto...
A back electromotive force-based position observer for motion-sensorless synchronous reluctance moto...
A reduced-order position observer with stator-resistance adaptation is proposed for motion-sensorles...
A reduced-order position observer with stator-resistance adaptation is proposed for motion-sensorles...
A back electromotive force-based position observer for motion-sensorless synchronous reluctance moto...
Two back-EMF-based position observers are compared for motion-sensorless synchronous reluctance moto...
A back-electromotive-force-based reduced-order position observer with stator-resistance adaptation i...
A back-electromotive-force-based reduced-order position observer with stator-resistance adaptation i...
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...
A back electromotive force-based position observer for motion-sensorless synchronous reluctance moto...
A back electromotive force-based position observer for motion-sensorless synchronous reluctance moto...
This paper deals with the speed and position estimation for synchronous reluctance motors (SyRMs) an...
A back-electromotive-force-based position observer for motion-sensorless synchronous reluctance moto...
A reduced-order position observer with stator-resistance adaptation is applied for motion-sensorless...
A back-electromotive-force-based position observer for motion-sensorless synchronous reluctance moto...
A back electromotive force-based position observer for motion-sensorless synchronous reluctance moto...
A reduced-order position observer with stator-resistance adaptation is proposed for motion-sensorles...
A reduced-order position observer with stator-resistance adaptation is proposed for motion-sensorles...
A back electromotive force-based position observer for motion-sensorless synchronous reluctance moto...