To control unmanned aerial systems, we rarely have a perfect system model. Safe and aggressive planning is also challenging for nonlinear and under-actuated systems. Expert pilots, however, demonstrate maneuvers that are deemed at the edge of plane envelope. Inspired by biological systems, in this paper, we introduce a framework that leverages methods in the field of control theory and reinforcement learning to generate feasible, possibly aggressive, trajectories. For the control policies, Dynamic Movement Primitives (DMPs) imitate pilot-induced primitives, and DMPs are combined in parallel to generate trajectories to reach original or different goal points. The stability properties of DMPs and their overall systems are analyzed using contr...
This paper presents an innovative kinodynamic motion planning algorithm for Unmanned Aircraft System...
The field of aerial manipulation has seen rapid advances, transitioning from push-and-slide tasks to...
In this paper, we investigate the operation of an aerial manipulator system, namely an Unmanned Aeri...
To control unmanned aerial systems, we rarely have a perfect system model. Safe and aggressive plann...
Autonomous systems extend upon human capabilities and can be equipped with superhuman attributes in ...
Machine learning is an ever-expanding field of research with a wide range of potential applications....
AbstractThis paper introduces a kinodynamic motion planning algorithm for Unmanned Aircraft Systems ...
Reinforcement learning (RL) enables the autonomous formation of optimal, adaptive control laws for s...
Postprint version of published articleContemporary autopilot systems for unmanned aerial vehicles (U...
This thesis investigates the possibility of using reinforcement learning (RL) techniques to create a...
Unmanned Aircraft Systems (UAS) have the potential to perform many of the dangerous missions curren...
Adding intelligence to uncrewed aerial vehicle (UAV) design to improve performance in a variety of d...
peer reviewedIn this paper we apply deep reinforcement learning techniques on a multicopter for lear...
Artificial intelligence has been called the fourth wave of industrialization following steam power, ...
Uncrewed Aerial Vehicles (UAVs) are playing an increasingly signifcant role in modern life. In the p...
This paper presents an innovative kinodynamic motion planning algorithm for Unmanned Aircraft System...
The field of aerial manipulation has seen rapid advances, transitioning from push-and-slide tasks to...
In this paper, we investigate the operation of an aerial manipulator system, namely an Unmanned Aeri...
To control unmanned aerial systems, we rarely have a perfect system model. Safe and aggressive plann...
Autonomous systems extend upon human capabilities and can be equipped with superhuman attributes in ...
Machine learning is an ever-expanding field of research with a wide range of potential applications....
AbstractThis paper introduces a kinodynamic motion planning algorithm for Unmanned Aircraft Systems ...
Reinforcement learning (RL) enables the autonomous formation of optimal, adaptive control laws for s...
Postprint version of published articleContemporary autopilot systems for unmanned aerial vehicles (U...
This thesis investigates the possibility of using reinforcement learning (RL) techniques to create a...
Unmanned Aircraft Systems (UAS) have the potential to perform many of the dangerous missions curren...
Adding intelligence to uncrewed aerial vehicle (UAV) design to improve performance in a variety of d...
peer reviewedIn this paper we apply deep reinforcement learning techniques on a multicopter for lear...
Artificial intelligence has been called the fourth wave of industrialization following steam power, ...
Uncrewed Aerial Vehicles (UAVs) are playing an increasingly signifcant role in modern life. In the p...
This paper presents an innovative kinodynamic motion planning algorithm for Unmanned Aircraft System...
The field of aerial manipulation has seen rapid advances, transitioning from push-and-slide tasks to...
In this paper, we investigate the operation of an aerial manipulator system, namely an Unmanned Aeri...