AbstractObstacles avoidance of Autonomous Surface Vessel (ASV) in riverine environment is challenging since the motion space is constrained by the unstructured riverbanks, especially for the track keeping cruise task. This paper proposes a balance-Artificial Potential Field (APF) hybrid method to realize the ASV track-keeping and obstacles avoidance. The balance scheme is to keep the ASV cruise in the center of river while the Artificial Potential Field method is to avoid obstacles. The simulation results show that this approach is efficient for ASV navigation and successfully avoid obstacles in challenging situations, such as narrow passage and S-shape avoidance
This paper presents a multi-point potential field (MPPF) method for obstacle avoidance of Autonomous...
This article considers collision avoidance (COLAV) for both static and moving obstacles using the br...
This paper presents a multi-point potential field (MPPF) method for obstacle avoidance of Autonomous...
1980-1994A hybrid Artificial Potential Field (APF) method is addressed in this paper for Autonomous ...
It is challenging that Autonomous Surface Vehicle (ASV) navigated in the riverine environment since...
It is challenging that Autonomous Surface Vehicle (ASV) navigated in the riverine environment since...
Presently, there is increasing interest in autonomous ships to reduce human errors and support intel...
Path-keeping requires unmanned surface vehicles (USVs) to follow a planned path in autonomous naviga...
Automatic simulation programs of ship navigation can be a powerful tool for operational planning and...
Automatic simulation programs of ship navigation can be a powerful tool for operational planning and...
It is essential to promote the intelligence and autonomy of Maritime Autonomous Surface Ships (MASSs...
A modified path-following control system using the vector field method for an underactuated autonomo...
In this research, a hybrid approach for path planning of autonomous ships that generates both global...
In this research, a hybrid approach for path planning of autonomous ships that generates both global...
With growing advances in technology and the everyday dependence on oceans for resources, the role of...
This paper presents a multi-point potential field (MPPF) method for obstacle avoidance of Autonomous...
This article considers collision avoidance (COLAV) for both static and moving obstacles using the br...
This paper presents a multi-point potential field (MPPF) method for obstacle avoidance of Autonomous...
1980-1994A hybrid Artificial Potential Field (APF) method is addressed in this paper for Autonomous ...
It is challenging that Autonomous Surface Vehicle (ASV) navigated in the riverine environment since...
It is challenging that Autonomous Surface Vehicle (ASV) navigated in the riverine environment since...
Presently, there is increasing interest in autonomous ships to reduce human errors and support intel...
Path-keeping requires unmanned surface vehicles (USVs) to follow a planned path in autonomous naviga...
Automatic simulation programs of ship navigation can be a powerful tool for operational planning and...
Automatic simulation programs of ship navigation can be a powerful tool for operational planning and...
It is essential to promote the intelligence and autonomy of Maritime Autonomous Surface Ships (MASSs...
A modified path-following control system using the vector field method for an underactuated autonomo...
In this research, a hybrid approach for path planning of autonomous ships that generates both global...
In this research, a hybrid approach for path planning of autonomous ships that generates both global...
With growing advances in technology and the everyday dependence on oceans for resources, the role of...
This paper presents a multi-point potential field (MPPF) method for obstacle avoidance of Autonomous...
This article considers collision avoidance (COLAV) for both static and moving obstacles using the br...
This paper presents a multi-point potential field (MPPF) method for obstacle avoidance of Autonomous...