AbstractWing flapping and morphing can be very beneficial to managing the weight of micro air vehicles through coupling the aerodynamic forces with stability and control. In this letter, harvesting energy from the wing morphing is studied to power cameras, sensors, or communication devices of micro air vehicles and to aid in the management of their power. The aerodynamic loads on flapping wings are simulated using a three-dimensional unsteady vortex lattice method. Active wing shape morphing is considered to enhance the performance of the flapping motion. A gradient-based optimization algorithm is used to pinpoint the optimal kinematics maximizing the propellent efficiency. To benefit from the wing deformation, we place piezoelectric layers...
Flapping-wing micro air vehicle (MAV) is an emerging micro-robotic technology, which has several cha...
Flapping-wing flight provides versatile maneuvers such as vertical takeoff, hover, glide, dash and r...
Flapping wing micro air vehicles (MAVs) take inspiration from natural fliers, such as insects and hu...
AbstractWing flapping and morphing can be very beneficial to managing the weight of micro air vehicl...
An energy method is used in order to derive the non-linear equations of motion of a smart flapping w...
An energy method is used in order to derive the non-linear equations of motion of a smart flapping w...
Unmanned air vehicles (UAVs) and micro air vehicles (MAVs) constitute unique application platforms f...
<p>Miniature flapping flight systems hold great promise in matching the agility of their natural cou...
As one of the most important components of a flapping-wing micro air vehicle (FWMAV), the design of ...
Inspired by insect flights, flapping wing micro air vehicles (FWMAVs) keep attracting attention from...
As one of the most important components of a flapping-wing micro air vehicle (FWMAV), the design of ...
ABSTRACT: The developments of innovative adaptive structures on Unmanned Aerial Vehicles (UAVs), suc...
This work presents a theoretical analysis of the actua-tion energy requirements of a morphing aircra...
This thesis work has been carried out at Clarkson University in Potsdam NY, USA and involved the des...
Micromechanical Flying Insect (MFI) or simply ‘robofly’ is a newly introduced air vehicle which is t...
Flapping-wing micro air vehicle (MAV) is an emerging micro-robotic technology, which has several cha...
Flapping-wing flight provides versatile maneuvers such as vertical takeoff, hover, glide, dash and r...
Flapping wing micro air vehicles (MAVs) take inspiration from natural fliers, such as insects and hu...
AbstractWing flapping and morphing can be very beneficial to managing the weight of micro air vehicl...
An energy method is used in order to derive the non-linear equations of motion of a smart flapping w...
An energy method is used in order to derive the non-linear equations of motion of a smart flapping w...
Unmanned air vehicles (UAVs) and micro air vehicles (MAVs) constitute unique application platforms f...
<p>Miniature flapping flight systems hold great promise in matching the agility of their natural cou...
As one of the most important components of a flapping-wing micro air vehicle (FWMAV), the design of ...
Inspired by insect flights, flapping wing micro air vehicles (FWMAVs) keep attracting attention from...
As one of the most important components of a flapping-wing micro air vehicle (FWMAV), the design of ...
ABSTRACT: The developments of innovative adaptive structures on Unmanned Aerial Vehicles (UAVs), suc...
This work presents a theoretical analysis of the actua-tion energy requirements of a morphing aircra...
This thesis work has been carried out at Clarkson University in Potsdam NY, USA and involved the des...
Micromechanical Flying Insect (MFI) or simply ‘robofly’ is a newly introduced air vehicle which is t...
Flapping-wing micro air vehicle (MAV) is an emerging micro-robotic technology, which has several cha...
Flapping-wing flight provides versatile maneuvers such as vertical takeoff, hover, glide, dash and r...
Flapping wing micro air vehicles (MAVs) take inspiration from natural fliers, such as insects and hu...