flapping wing micro air vehicle

Control of a Minimally Actuated Biomimetic Vehicle using Quarter-Cycle Wingbeat Modulation

This paper describes a technique, called quarter-cycle constant period frequency modulation, to control the motion of wings on a flapping wing micro-air vehicle. This technique allows control over the wingbeat period and three additional points (the …

Wing Flexibility Induced Control Reversal For Flapping Wing Vehicles: Theoretical Analysis

Wing Flexibility Induced Control Reversal For Flapping Wing Vehicles: Observation and Evaluation

Wing Design and Testing for a Tailless Flapping Wing Micro-Air Vehicle

Methods and Apparatus to Achieve Independent Six Degree Control of Flapping Wing Micro Air Vehicle

A method of configuring a wing velocity profile includes segmenting a complete wingbeat cycle into a set of quarter strokes including a first quarter-stroke, a second quarter stroke, a third quarter-stroke, and a fourth quarter-stroke. The method …

Experimental Measurements of Cycle Averaged Forces for a Flapping Wing Vehicle

In this work, experimental measurements of cycle-averaged forces produced by a flapping wing micro air vehicle are provided. The measurements are taken with a one degree-of-freedom force balance. The vehicle is mounted in different orientations so …

Quarter Cycle Modulation of a Minimally Actuated Biomimetic Vehicle

Implementation of Split-Cycle Control for Micro Aerial Vehicles

Wing Velocity Control System for Testing Body Motion Control Methods for Flapping Wing MAVs

This work is focused on testing the viability of split-cycle constant-period frequency modulation for controlling a flapping wing micro air vehicle. By varying the velocities of the upstroke and downstroke portions of a flapping wings’ motion, …

Structural Technology Evaluation and Analysis Program (STEAP). Delivery Order 0035: Dynamics and Control and Computational Design of Flapping Wing Micro Air Vehicles