Simplified Quasi-Steady Aeromechanic Model for Flapping-Wing Robots with Passively Rotating Hinges @ICRA-cg8kk
Simplified Quasi-Steady Aeromechanic Model for Flapping-Wing Robots with Passively Rotating Hinges  @ICRA-cg8kk
Uploaded May 2018 | Updated September 2026, 1 week ago
ICRA 2018 Spotlight Video
Interactive Session Thu AM Pod N.8
Authors: Li, Zhiwei; Suntharasantic, Sompol; Chirarattananon, Pakpong
Title: Simplified Quasi-Steady Aeromechanic Model for Flapping-Wing Robots with Passively Rotating Hinges

Abstract:
At millimeter and centimeter scales, flapping-wing robots often employ flexural passive wing hinges to eliminate extra actuation and mechanical complexity. In this paper, we propose a modified quasi-steady model for predicting aerodynamic forces from a flapping wing with a passively rotating hinge. The model is based on a simplifying assumption of balanced torque (aerodynamic torque equals to the restoring torque from the hinge). The resulting lift and drag can then be accurately predicted by the modified quasi-steady model without direct knowledge of the angle of attack of the wing. Approximate expression of stroke-averaged forces are also derived. We performed flapping experiments on a centimeter-scale device and the measured lifts show good agreement with the model predictions.
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ICRA 2018 |

Simplified Quasi-Steady Aeromechanic Model for Flapping-Wing Robots with Passively Rotating Hinges

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