This paper presents the underlying theoretical developments and successful experimental demonstrations of perching of an aerial robot. The open-loop lateral-directional dynamics of the robot are inherently unstable because it lacks a vertical tail for agility, similar to birds. A unique feature of this robot is that it uses wing articulation for controlling the flight path angle as well as the heading. New guidance algorithms with guaranteed stability are obtained by rewriting the flight dynamic equations in the spatial domain rather than as functions of time, after which dynamic inversion is employed. It is shown that nonlinear dynamic inversion naturally leads to proportional-integral-derivative (PID) controllers, thereby providing an exa...
In this work, we present an experimental setup and guide to enable the perching of large flapping-wi...
There is a considerable interest in developing robotic aircraft, inspired by birds, for a variety of...
2021 Spring.Includes bibliographical references.Micro Aerial Vehicles (MAVs) are widely used for var...
This paper presents the underlying theoretical developments and successful experimental demonstratio...
Abstract—We describe the design of an aerial robot inspired by birds and the underlying theoretical ...
We describe the design of an aerial robot inspired by birds and the underlying theoretical developme...
We describe the design of an aerial robot inspired by birds and the underlying theoretical developme...
We describe the design of an aerial robot inspired by birds and the underlying theoretical developme...
This paper presents an experimental demonstration of perching by a micro aerial vehicle (MAV) equipp...
Flapping wings are a bio-inspired method to produce lift and thrust in aerial robots, leading to qui...
This paper explores the use of variable wing dihedral and variable wing twist (in conjunction with ...
This paper explores the use of variable wing dihedral and variable wing twist (in conjunction with ...
Birds take off and land on a wide range of complex surfaces. In contrast, current robots are limited...
This work investigates a post-perching control for flapping-wing flying robots (FWFRs) to control an...
Current unmanned aerial vehicles (UAVs) have to stay airborne during surveillance missions, decreasi...
In this work, we present an experimental setup and guide to enable the perching of large flapping-wi...
There is a considerable interest in developing robotic aircraft, inspired by birds, for a variety of...
2021 Spring.Includes bibliographical references.Micro Aerial Vehicles (MAVs) are widely used for var...
This paper presents the underlying theoretical developments and successful experimental demonstratio...
Abstract—We describe the design of an aerial robot inspired by birds and the underlying theoretical ...
We describe the design of an aerial robot inspired by birds and the underlying theoretical developme...
We describe the design of an aerial robot inspired by birds and the underlying theoretical developme...
We describe the design of an aerial robot inspired by birds and the underlying theoretical developme...
This paper presents an experimental demonstration of perching by a micro aerial vehicle (MAV) equipp...
Flapping wings are a bio-inspired method to produce lift and thrust in aerial robots, leading to qui...
This paper explores the use of variable wing dihedral and variable wing twist (in conjunction with ...
This paper explores the use of variable wing dihedral and variable wing twist (in conjunction with ...
Birds take off and land on a wide range of complex surfaces. In contrast, current robots are limited...
This work investigates a post-perching control for flapping-wing flying robots (FWFRs) to control an...
Current unmanned aerial vehicles (UAVs) have to stay airborne during surveillance missions, decreasi...
In this work, we present an experimental setup and guide to enable the perching of large flapping-wi...
There is a considerable interest in developing robotic aircraft, inspired by birds, for a variety of...
2021 Spring.Includes bibliographical references.Micro Aerial Vehicles (MAVs) are widely used for var...