Abstract—In this paper, we present a layered control scheme for an autonomous sailboat. The high level control uses an adjusted PRM-Dijkstra algorithm for the routing (global path planning) of autonomous sailboat. This algorithm exploits the sailboat kinematics and wind distribution on the map. For the low level control, we design a new nonlinear course (direction of the velocity vector) controller that exhibits su-perior performance compared to conventionally used heading controller. A smoothing function is also introduced in the design of the controller to switch easily from course control to heading control, especially when course measurements are noisy at low speed. I
Autonomous sailboats are good candidates for long term oceanic surveys, since they use wind power as...
The paper presents and discusses tests of a waypoint controller used to sail a ship along the desire...
In view of the vulnerability of ocean unmanned sailboats to the large lateral velocities due to wind...
Path planning and control are particularly challenging tasks for a sailboat. In contrast to land veh...
A fleet of autonomous sailboat could change our perception of the planet. An autonomous sailboat cou...
This paper addresses the issue of data-driven online velocity optimization of an autonomous sailboat...
This paper addresses the issue of data-driven online velocity optimization of an autonomous sailboat...
This paper addresses the issue of data-driven online velocity optimization of an autonomous sailboat...
This paper addresses the issue of data-driven online velocity optimization of an autonomous sailboat...
Abstract—This paper addresses the design and implementation of feedback controllers for the directio...
Payload directed flight research focuses on closing control loops around sensor data to optimize mis...
This thesis is divided into five parts. In the first part, a general mathematical model of a sailboa...
This thesis is divided into five parts. In the first part, a general mathematical model of a sailboa...
The main challenges in the development of autonomous sailboats are: control, path and trajectory pl...
In the automotive industry, automation is on the rise and it increases safety while decreasing costs...
Autonomous sailboats are good candidates for long term oceanic surveys, since they use wind power as...
The paper presents and discusses tests of a waypoint controller used to sail a ship along the desire...
In view of the vulnerability of ocean unmanned sailboats to the large lateral velocities due to wind...
Path planning and control are particularly challenging tasks for a sailboat. In contrast to land veh...
A fleet of autonomous sailboat could change our perception of the planet. An autonomous sailboat cou...
This paper addresses the issue of data-driven online velocity optimization of an autonomous sailboat...
This paper addresses the issue of data-driven online velocity optimization of an autonomous sailboat...
This paper addresses the issue of data-driven online velocity optimization of an autonomous sailboat...
This paper addresses the issue of data-driven online velocity optimization of an autonomous sailboat...
Abstract—This paper addresses the design and implementation of feedback controllers for the directio...
Payload directed flight research focuses on closing control loops around sensor data to optimize mis...
This thesis is divided into five parts. In the first part, a general mathematical model of a sailboa...
This thesis is divided into five parts. In the first part, a general mathematical model of a sailboa...
The main challenges in the development of autonomous sailboats are: control, path and trajectory pl...
In the automotive industry, automation is on the rise and it increases safety while decreasing costs...
Autonomous sailboats are good candidates for long term oceanic surveys, since they use wind power as...
The paper presents and discusses tests of a waypoint controller used to sail a ship along the desire...
In view of the vulnerability of ocean unmanned sailboats to the large lateral velocities due to wind...