A sliding mode position control for high-performance real-time applications of induction motors in developed in this work. The design also incorporates a simple flux estimator in order to avoid the flux sensors. Then, the proposed control scheme presents a low computational cost and therefore can be implemented easily in a real-time applications using a low cost DSP-processor. The stability analysis of the controller under parameter uncertainties and load disturbances in provided using Lyapunov stability theory. Finally, simulated and experimental results show that the proposed controller with the proposed observer provides a good trajectory tracking and that this scheme is robust with respect to plant parameter variations and external load...
This paper proposes a fault tolerant control design that consists of two parts: a nominal performanc...
This paper presents the use of a higher order sliding mode scheme for sensorless control of inductio...
In this paper, the performance of two control systems of induction motors for automotive application...
This paper proposes the use of sliding mode control to improve the performance of field-oriented spe...
Abstract: This paper proposes the use of sliding mode control to improve the performance of field-or...
Induction motors are widely used in an industry and it is necessary to improve control methods for i...
Today induction motor requires a variable speed control to serve wide range of applications. The obj...
In this paper, a terminal sliding mode adaptive controller is developed for induction motor. The con...
Abstract — This paper develops a sensorless vector controlled method for AC induction motor using sl...
[[abstract]]In this paper, discrete-time sliding mode control is proposed for implementing an induct...
This paper presents an adaptive sliding-mode observer for the speed-sensorless field-oriented contro...
In this paper, the design of a speed control scheme based on a total sliding mode control for Indire...
Abstract- This paper demonstrates that invariant regulator and superior servo performance can be obt...
The main objectives of this paper is aimed to control the position of a field oriented Induction Ser...
A novel sensorless adaptive robust control law is proposed to improve the trajectory tracking perfor...
This paper proposes a fault tolerant control design that consists of two parts: a nominal performanc...
This paper presents the use of a higher order sliding mode scheme for sensorless control of inductio...
In this paper, the performance of two control systems of induction motors for automotive application...
This paper proposes the use of sliding mode control to improve the performance of field-oriented spe...
Abstract: This paper proposes the use of sliding mode control to improve the performance of field-or...
Induction motors are widely used in an industry and it is necessary to improve control methods for i...
Today induction motor requires a variable speed control to serve wide range of applications. The obj...
In this paper, a terminal sliding mode adaptive controller is developed for induction motor. The con...
Abstract — This paper develops a sensorless vector controlled method for AC induction motor using sl...
[[abstract]]In this paper, discrete-time sliding mode control is proposed for implementing an induct...
This paper presents an adaptive sliding-mode observer for the speed-sensorless field-oriented contro...
In this paper, the design of a speed control scheme based on a total sliding mode control for Indire...
Abstract- This paper demonstrates that invariant regulator and superior servo performance can be obt...
The main objectives of this paper is aimed to control the position of a field oriented Induction Ser...
A novel sensorless adaptive robust control law is proposed to improve the trajectory tracking perfor...
This paper proposes a fault tolerant control design that consists of two parts: a nominal performanc...
This paper presents the use of a higher order sliding mode scheme for sensorless control of inductio...
In this paper, the performance of two control systems of induction motors for automotive application...