A Cyborg Insect Reveals a Function of a Muscle in Free Flight

Author:

Vo-Doan T. Thang12ORCID,Dung V. Than1,Sato Hirotaka1ORCID

Affiliation:

1. Nanyang Technological University, School of Mechanical and Aerospace Engineering, Singapore

2. University of Freiburg, Institute of Biology I, Germany

Abstract

While engineers put lots of effort, resources, and time in building insect scale micro aerial vehicles (MAVs) that fly like insects, insects themselves are the real masters of flight. What if we would use living insect as platform for MAV instead? Here, we reported a flight control via electrical stimulation of a flight muscle of an insect-computer hybrid robot, which is the interface of a mountable wireless backpack controller and a living beetle. The beetle uses indirect flight muscles to drive wing flapping and three major direct flight muscles (basalar, subalar, and third axilliary (3Ax) muscles) to control the kinematics of the wings for flight maneuver. While turning control was already achieved by stimulating basalar and 3Ax muscles, electrical stimulation of subalar muscles resulted in braking and elevation control in flight. We also demonstrated around 20 degrees of contralateral yaw and roll by stimulating individual subalar muscle. Stimulating both subalar muscles lead to an increase of 20 degrees in pitch and decelerate the flight by 1.5 m/s 2 as well as an induce in elevation of 2 m/s 2 .

Funder

Japan Synchrotron Radiation Research Institute

SPring-8

Ministry of Education - Singapore

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Applied Mathematics,General Mathematics

Reference60 articles.

1. R. S. Fearing K. H. Chiang M. H. Dickinson D. L. Pick M. Sitti and J. Yan “Wing transmission for a micromechanical flying insect ” in Proceedings 2000 ICRA. Millennium Conference. IEEE International Conference on Robotics and Automation. Symposia Proceedings (Cat. No. 00CH37065) (IEEE 2000) San Francisco CA USA 2000 vol. 2 pp. 1509–1516

2. Untethered flight of an insect-sized flapping-wing microscale aerial vehicle

3. The first takeoff of a biologically inspired at-scale robotic insect;Wood R. J.;IEEE Transactions on Robotics,2008

4. Mimicking nature’s flyers: a review of insect-inspired flying robots

5. Mechanisms of collision recovery in flying beetles and flapping-wing robots

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