Sensorless induction motor (IM) drives are widely used in industry for their reliability and flexibility, particularly in hostile environment. However, the performance of many of previously developed observer based speed sensors in very low speeds of IM drives was not satisfactory. In this paper, the model reference adaptive system (MRAS)-based speed and stator resistance estimators of IM drives fed by four switch three phase inverter (FSTPI) in the critical low and zero speed region of operation are presented. The estimated speed is used as feedback in a vector control system. The MRAS approach has the immediate advantage that the model is simple, eliminates the produced error in the speed adaptation, and more stable and robust. Simulation...
In recent years, the elimination of the speed transducer in vector controlled induction motor drives...
A method for rotor speed estimation using model reference adaptive system (MRAS) was proposed to imp...
In recent years, the elimination of the speed transducer in vector controlled induction motor drives...
This paper presents sensorless position and speed control for a four-switch three-phase inverter (FS...
Abstract — Model Reference Adaptive System (MRAS) represents one of the most attractive and popular ...
This paper investigates performance of a Model reference adaptive system (MRAS) based cost-effective...
This paper described that the stator current-based model reference adaptive system (MRAS) speed esti...
Model Reference Adaptive System (MRAS) represents one of the most attractive and popular solutions f...
A sensorless indirect stator-flux-oriented control (ISFOC) induction motor drive at very low frequen...
A sensorless indirect stator-flux-oriented control (ISFOC) induction motor drive at very low frequen...
International audienceA sensorless indirect stator-flux-oriented control (ISFOC) induction motor dri...
Abstract: In this paper, a novel stator current based Model Reference Adaptive System (MRAS) estimat...
To improve operational stability of control system induction motor, a speed sensorless vector contro...
AC drives based on full digital control have reached the status of a maturing technology in a broad ...
In recent years, the elimination of the speed transducer in vector controlled induction motor drives...
In recent years, the elimination of the speed transducer in vector controlled induction motor drives...
A method for rotor speed estimation using model reference adaptive system (MRAS) was proposed to imp...
In recent years, the elimination of the speed transducer in vector controlled induction motor drives...
This paper presents sensorless position and speed control for a four-switch three-phase inverter (FS...
Abstract — Model Reference Adaptive System (MRAS) represents one of the most attractive and popular ...
This paper investigates performance of a Model reference adaptive system (MRAS) based cost-effective...
This paper described that the stator current-based model reference adaptive system (MRAS) speed esti...
Model Reference Adaptive System (MRAS) represents one of the most attractive and popular solutions f...
A sensorless indirect stator-flux-oriented control (ISFOC) induction motor drive at very low frequen...
A sensorless indirect stator-flux-oriented control (ISFOC) induction motor drive at very low frequen...
International audienceA sensorless indirect stator-flux-oriented control (ISFOC) induction motor dri...
Abstract: In this paper, a novel stator current based Model Reference Adaptive System (MRAS) estimat...
To improve operational stability of control system induction motor, a speed sensorless vector contro...
AC drives based on full digital control have reached the status of a maturing technology in a broad ...
In recent years, the elimination of the speed transducer in vector controlled induction motor drives...
In recent years, the elimination of the speed transducer in vector controlled induction motor drives...
A method for rotor speed estimation using model reference adaptive system (MRAS) was proposed to imp...
In recent years, the elimination of the speed transducer in vector controlled induction motor drives...