The major hurdle encountered in achieving high performance in servo speed control is the occurrence of large relative errors at low speeds due to torque variations. In this paper, it is shown that this problem can be tackled in the case of synchronous motors, by keeping the stator current and the rotor flux nonorthogonal and including an inner position control loop to improve the transient behavior of the system. Such a scheme substantially improves disturbance rejection at the cost of accentuating the nonlinearities of the system and increasing the copper losses. In view of the pronounced nonlinearities encountered here, adaptive control using neural networks is resorted to
This paper suggests an adaptive funnel dynamic surface control method with a disturbance observer fo...
The classical feedback control method for the permanent-magnet synchronous motor cannot fulfill the ...
This paper presents an adaptive speed controller based on artificial intelligent technique to improv...
Abstract- The major hurdle encountered in achieving high performance in servo speed control is the o...
A master-slave synchronization control problem is addressed for current-fed permanent magnets synchr...
This brief considers the problem of neural networks (NNs)-based adaptive dynamic surface control (DS...
Permanent Magnet Synchronous Motors (PMSM) are problematic to control due to their lack of effective...
The report suggests using an active disturbance rejection control (ADRC) system to decrease torque r...
In this paper, a sensorless neural network speed control strategy of permanent magnet synchronous ma...
This paper presents a nonlinear adaptive control (NAC) scheme for the speed regulation of a permanen...
In this paper, we propose a robust adaptive controller for induction motors with uncertainties usin...
In this paper, an adaptive control scheme is introduced for permanent magnet synchronous machines (P...
A master–slave synchronisation control problem is addressed for current-fed DC and permanent magnet ...
This paper focuses on current control in a permanent-magnet synchronous motor (PMSM). This paper has...
In this paper, we proposed nonlinear adaptive speed controller for permanent magnet synchronous moto...
This paper suggests an adaptive funnel dynamic surface control method with a disturbance observer fo...
The classical feedback control method for the permanent-magnet synchronous motor cannot fulfill the ...
This paper presents an adaptive speed controller based on artificial intelligent technique to improv...
Abstract- The major hurdle encountered in achieving high performance in servo speed control is the o...
A master-slave synchronization control problem is addressed for current-fed permanent magnets synchr...
This brief considers the problem of neural networks (NNs)-based adaptive dynamic surface control (DS...
Permanent Magnet Synchronous Motors (PMSM) are problematic to control due to their lack of effective...
The report suggests using an active disturbance rejection control (ADRC) system to decrease torque r...
In this paper, a sensorless neural network speed control strategy of permanent magnet synchronous ma...
This paper presents a nonlinear adaptive control (NAC) scheme for the speed regulation of a permanen...
In this paper, we propose a robust adaptive controller for induction motors with uncertainties usin...
In this paper, an adaptive control scheme is introduced for permanent magnet synchronous machines (P...
A master–slave synchronisation control problem is addressed for current-fed DC and permanent magnet ...
This paper focuses on current control in a permanent-magnet synchronous motor (PMSM). This paper has...
In this paper, we proposed nonlinear adaptive speed controller for permanent magnet synchronous moto...
This paper suggests an adaptive funnel dynamic surface control method with a disturbance observer fo...
The classical feedback control method for the permanent-magnet synchronous motor cannot fulfill the ...
This paper presents an adaptive speed controller based on artificial intelligent technique to improv...