DocumentCode :
716848
Title :
Platform design and tethered flight of a motor-driven flapping-wing system
Author :
Hines, Lindsey ; Colmenares, David ; Sitti, Metin
Author_Institution :
Max Planck Inst. for Intell. Syst., Stuttgart, Germany
fYear :
2015
fDate :
26-30 May 2015
Firstpage :
5838
Lastpage :
5845
Abstract :
In this work, we examine two design modifications to a tethered motor-driven flapping-wing system. Previously, we had demonstrated a simple mechanism utilizing a linear transmission for resonant operation and direct drive of the wing flapping angle for control. The initial two-wing system had a weight of 2.7 grams and a maximum lift-to-weight ratio of 1.4. While capable of vertical takeoff, in open-loop flight it demonstrated instability and pitch oscillations at the wing flapping frequency, leading to flight times of only a few wing strokes. Here the effect of vertical wing offset as well as an alternative multi-wing layout is investigated and experimentally tested with newly constructed prototypes. With only a change in vertical wing offset, stable open-loop flight of the two-wing flapping system is shown to be theoretically possible, but difficult to achieve with our current design and operating parameters. Both of the new two and four-wing systems, however, prove capable of flying to the end of the tether, with the four-wing system prototype eliminating disruptive wing beat oscillations.
Keywords :
aerospace components; autonomous aerial vehicles; design engineering; flapping wing micro aerial vehicle design; lift-to-weight ratio; linear transmission; mass 2.7 g; multiwing layout; open-loop flight; platform design; tethered flight; tethered motor-driven flapping-wing system; vertical wing offset effect; wing flapping angle; wing flapping frequency; Aerodynamics; Damping; Oscillators; Prototypes; Springs; Torque; bio-inspired; flapping-wing; motor-driven; resonance;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Robotics and Automation (ICRA), 2015 IEEE International Conference on
Conference_Location :
Seattle, WA
Type :
conf
DOI :
10.1109/ICRA.2015.7140016
Filename :
7140016
Link To Document :
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