International audienceWe examine the path-following guidance of a UAV in three-dimensions and in the presence of quasi-constant but unknown wind disturbances. The analysis and control design are based only on a kinematic model. A first contribution is an alternative description of the dynamics that simplifies the design. A second contribution is the derivation of a guidance law that ensures the global asymptotic convergence to the desired path in spite of wind perturbations. To achieve our objective a simple estimator based on the Immersion and Invariance (I&I) approach is used for the estimation of the wind velocities and tools from robustness analysis for the stability proof
This paper presents an algorithm for solving the problem of tracking smooth curves by a fixed wing u...
This paper presents an algorithm for solving the problem of tracking smooth curves by a fixed wing u...
International audienceIn this paper, we study the trajectory tracking problem of autonomous small ai...
International audienceWe examine the path-following guidance of a UAV in three-dimensions and in the...
International audienceWe examine the path-following guidance of a UAV in three-dimensions and in the...
This paper presents a novel path following algorithm for fixed-wing unmanned aerial vehicles by virt...
This paper presents a novel path following algorithm for fixed-wing unmanned aerial vehicles by virt...
This paper presents a novel path following algorithm for fixed-wing unmanned aerial vehicles by virt...
This paper presents a novel path following algorithm for fixed-wing unmanned aerial vehicles by virt...
This paper presents an algorithm for solving the problem of tracking smooth curves by a fixed wing u...
The high maneuverability of fixed-wing unmanned aerial vehicles (UAVs) exposes these systems to seve...
This paper presents an algorithm for solving the problem of tracking smooth curves by a fixed wing u...
This paper considers UAV path following in cluttered environments under windy conditions. Unstructur...
This paper presents an algorithm for solving the problem of tracking smooth curves by a fixed wing u...
The research data supporting this publication have been presented in the paper. Some raw flight test...
This paper presents an algorithm for solving the problem of tracking smooth curves by a fixed wing u...
This paper presents an algorithm for solving the problem of tracking smooth curves by a fixed wing u...
International audienceIn this paper, we study the trajectory tracking problem of autonomous small ai...
International audienceWe examine the path-following guidance of a UAV in three-dimensions and in the...
International audienceWe examine the path-following guidance of a UAV in three-dimensions and in the...
This paper presents a novel path following algorithm for fixed-wing unmanned aerial vehicles by virt...
This paper presents a novel path following algorithm for fixed-wing unmanned aerial vehicles by virt...
This paper presents a novel path following algorithm for fixed-wing unmanned aerial vehicles by virt...
This paper presents a novel path following algorithm for fixed-wing unmanned aerial vehicles by virt...
This paper presents an algorithm for solving the problem of tracking smooth curves by a fixed wing u...
The high maneuverability of fixed-wing unmanned aerial vehicles (UAVs) exposes these systems to seve...
This paper presents an algorithm for solving the problem of tracking smooth curves by a fixed wing u...
This paper considers UAV path following in cluttered environments under windy conditions. Unstructur...
This paper presents an algorithm for solving the problem of tracking smooth curves by a fixed wing u...
The research data supporting this publication have been presented in the paper. Some raw flight test...
This paper presents an algorithm for solving the problem of tracking smooth curves by a fixed wing u...
This paper presents an algorithm for solving the problem of tracking smooth curves by a fixed wing u...
International audienceIn this paper, we study the trajectory tracking problem of autonomous small ai...