Intelligent control of an autonomous underwater vehicle (AUV) requires a control scheme which is robust to external perturbations. These perturbations are highly uncertain and can prevent the AUV from accomplishing its mission. A well-known robust control called sliding mode control (SMC) and its development have been introduced. However, it produces a chattering effect which requires more energy. To overcome this problem, this paper presents a novel robust dynamic region-based control scheme. An AUV needs to be able not only to track a moving target as a region but also to position itself inside the region. The proposed controller is developed based on an adaptive sliding mode scheme. An adaptive element is useful for the AUV to attenuate ...
This paper presents fuzzy sliding mode control with region tracking control for a single autonomous ...
This paper describes a sliding mode controller for autonomous underwater vehicles (AUVs). The dynami...
The problem of controlling an Autonomous Underwater Vehicle (AUV) in a diving maneuver is addressed....
The main goal in developing closed loop control system for an Autonomous Underwater Vehicle (AUV) is...
The main goal in developing closed loop control system for an Autonomous Underwater Vehicle (AUV) is...
Set point method has been typically used for trajectory tracking of Autonomous Underwater Vehicle (A...
This paper presents a robust-saved energy control and obstacles avoidance technique for an Autonomou...
This paper presents fuzzy sliding mode control with region tracking control for a single autonomous ...
The main problem for autonomous underwater vehicle (AUV) is not only how to make a stable underwater...
2572-2578This paper presents a robust-saved energy control and obstacles avoidance technique for an ...
999-1005Present study presents a novel region boundary-based tracking control for an Autonomous Und...
This paper presents an adaptive sliding mode controller for an autonomous under water vehicle (AUV) ...
This paper presents an adaptive sliding mode controller for an autonomous under water vehicle (AUV) ...
This paper presented two type of fuzzy sliding mode control with region tracking control for a singl...
This paper describes a sliding mode controller for autonomous underwater vehicles (AUVs). The dynami...
This paper presents fuzzy sliding mode control with region tracking control for a single autonomous ...
This paper describes a sliding mode controller for autonomous underwater vehicles (AUVs). The dynami...
The problem of controlling an Autonomous Underwater Vehicle (AUV) in a diving maneuver is addressed....
The main goal in developing closed loop control system for an Autonomous Underwater Vehicle (AUV) is...
The main goal in developing closed loop control system for an Autonomous Underwater Vehicle (AUV) is...
Set point method has been typically used for trajectory tracking of Autonomous Underwater Vehicle (A...
This paper presents a robust-saved energy control and obstacles avoidance technique for an Autonomou...
This paper presents fuzzy sliding mode control with region tracking control for a single autonomous ...
The main problem for autonomous underwater vehicle (AUV) is not only how to make a stable underwater...
2572-2578This paper presents a robust-saved energy control and obstacles avoidance technique for an ...
999-1005Present study presents a novel region boundary-based tracking control for an Autonomous Und...
This paper presents an adaptive sliding mode controller for an autonomous under water vehicle (AUV) ...
This paper presents an adaptive sliding mode controller for an autonomous under water vehicle (AUV) ...
This paper presented two type of fuzzy sliding mode control with region tracking control for a singl...
This paper describes a sliding mode controller for autonomous underwater vehicles (AUVs). The dynami...
This paper presents fuzzy sliding mode control with region tracking control for a single autonomous ...
This paper describes a sliding mode controller for autonomous underwater vehicles (AUVs). The dynami...
The problem of controlling an Autonomous Underwater Vehicle (AUV) in a diving maneuver is addressed....