During flight, natural fliers flap, twist and bend their wings to enhance flight performance. Lift and thrust benefit from flexibility as well as from both passive and active wing deformation. At the same time, the active deformations are used for flight control. In this study, we investigate strategies of control moments generation in a bio-inspired flapping-wing micro air vehicle (FWMAV). In particular, we propose a method for active control and attitude stabilization by introducing a wing deformation through adjustable wing sweep. The control method is demonstrated on a tailless FWMAV with independent wing sweep modulation on each of its four wings. The actuation mechanism consists of an arm joint at the leading edge, about which the win...
We present our insect-based hovering Flapping-Wing Micro Air Vehicle (FW-MAV) capable of sustained f...
Recently, it has been recognised that flapping wing propulsion can be more efficient than convention...
It is possible that MAV designs of the future will exploit flapping flight in order to perform missi...
During flight, natural fliers flap, twist and bend their wings to enhance flight performance. Lift a...
A key challenge in flapping-wing micro air vehicle (FWMAV) design is to generate high aerodynamic fo...
Flapping Wing Micro Air Vehicles (FWMAVs) are micro bioinspired systems which use flapping wings act...
Flapping Wing Micro Air Vehicles (FWMAVs) are micro bioinspired systems which use flapping wings act...
This article outlines a new control approach for flapping-wing micro-aerial vehicles (MAVs), in-spir...
Abstract Micro-aerial vehicles (MAV) and their promising applications—such as undetected sur-veillan...
Abstract Micro-aerial vehicles (MAV) and their promising applications—such as undetected sur-veillan...
The goal of the current research is to develop a hover capable, fully autonomous, flapping wing micr...
The use of drones, also called unmanned aerial vehicles (UAVs), is increasing every day. These aircr...
<p>Miniature flapping flight systems hold great promise in matching the agility of their natural cou...
The realization of a wing actuation mechanism for a flapping wing micro air vehicle requires a move ...
This paper proposes a wing root control mechanism inspired by the drag-based system of a dragonfly. ...
We present our insect-based hovering Flapping-Wing Micro Air Vehicle (FW-MAV) capable of sustained f...
Recently, it has been recognised that flapping wing propulsion can be more efficient than convention...
It is possible that MAV designs of the future will exploit flapping flight in order to perform missi...
During flight, natural fliers flap, twist and bend their wings to enhance flight performance. Lift a...
A key challenge in flapping-wing micro air vehicle (FWMAV) design is to generate high aerodynamic fo...
Flapping Wing Micro Air Vehicles (FWMAVs) are micro bioinspired systems which use flapping wings act...
Flapping Wing Micro Air Vehicles (FWMAVs) are micro bioinspired systems which use flapping wings act...
This article outlines a new control approach for flapping-wing micro-aerial vehicles (MAVs), in-spir...
Abstract Micro-aerial vehicles (MAV) and their promising applications—such as undetected sur-veillan...
Abstract Micro-aerial vehicles (MAV) and their promising applications—such as undetected sur-veillan...
The goal of the current research is to develop a hover capable, fully autonomous, flapping wing micr...
The use of drones, also called unmanned aerial vehicles (UAVs), is increasing every day. These aircr...
<p>Miniature flapping flight systems hold great promise in matching the agility of their natural cou...
The realization of a wing actuation mechanism for a flapping wing micro air vehicle requires a move ...
This paper proposes a wing root control mechanism inspired by the drag-based system of a dragonfly. ...
We present our insect-based hovering Flapping-Wing Micro Air Vehicle (FW-MAV) capable of sustained f...
Recently, it has been recognised that flapping wing propulsion can be more efficient than convention...
It is possible that MAV designs of the future will exploit flapping flight in order to perform missi...