This paper presents and implements a Super-Twisting high order sliding mode control for a BLDC motor. Conventional sliding mode controller has a very fast response, it allows the convergence in finite time and characterized by its robustness against disturbances and uncertainties; However, the chattering phenomenon due to the discontinuous nature of its control organ degrades its performance, especially in case of mechanical membranes control. To overcome this disadvantage, the most commun solutions are based on the adaptation of its discontinuous nature at static regime, it reduces effectively the chattering phenomenon, but on the other hand impacts performance in terms of robustness. The Super-Twisting is an algorithm of high order slidin...
Multi-axis high precision machining uses linear motors actuators in order to deal with robustness an...
A DC motor velocity control in feedback systems usually requires a velocity sensor, which increases...
In this article, we present a high-order sliding mode controller of a DC motor drive connected to a ...
This paper presents and implements a Super-Twisting high order sliding mode control for a BLDC motor...
This paper proposes two high-order sliding mode algorithms to achieve highperformance control of ind...
This paper proposes two high-order sliding mode algorithms to achieve highperformance control of ind...
This paper presents two cascaded second order sliding mode controllers (SOSMCs) for brushless doubly...
This paper presents the design and implementation of a super-twisting algorithm second-order sliding...
This paper presents a novel hybrid control of a BLDC motor using a mixed sliding mode and fuzzy logi...
In this paper, a real-time robust closed-loop control scheme for controlling the velocity of a Direc...
Sliding mode control is known for its robustness against plant uncertainties and disturbance rejecti...
This paper will compare properties of Sliding Mode Controlled (SMC) and classical Proportional Integ...
Second order sliding mode control is known for the ability to suppress chattering effect, often bein...
Mostly, Brushless DC motors have been used in various industrial and domestic applications because o...
High demands of precision on machine tools are hardly cope by using existing classic control algorit...
Multi-axis high precision machining uses linear motors actuators in order to deal with robustness an...
A DC motor velocity control in feedback systems usually requires a velocity sensor, which increases...
In this article, we present a high-order sliding mode controller of a DC motor drive connected to a ...
This paper presents and implements a Super-Twisting high order sliding mode control for a BLDC motor...
This paper proposes two high-order sliding mode algorithms to achieve highperformance control of ind...
This paper proposes two high-order sliding mode algorithms to achieve highperformance control of ind...
This paper presents two cascaded second order sliding mode controllers (SOSMCs) for brushless doubly...
This paper presents the design and implementation of a super-twisting algorithm second-order sliding...
This paper presents a novel hybrid control of a BLDC motor using a mixed sliding mode and fuzzy logi...
In this paper, a real-time robust closed-loop control scheme for controlling the velocity of a Direc...
Sliding mode control is known for its robustness against plant uncertainties and disturbance rejecti...
This paper will compare properties of Sliding Mode Controlled (SMC) and classical Proportional Integ...
Second order sliding mode control is known for the ability to suppress chattering effect, often bein...
Mostly, Brushless DC motors have been used in various industrial and domestic applications because o...
High demands of precision on machine tools are hardly cope by using existing classic control algorit...
Multi-axis high precision machining uses linear motors actuators in order to deal with robustness an...
A DC motor velocity control in feedback systems usually requires a velocity sensor, which increases...
In this article, we present a high-order sliding mode controller of a DC motor drive connected to a ...