Untethered flight of an insect-sized flapping-wing microscale aerial vehicle (2024)

References

  1. Ma, K. Y., Felton, S. M. & Wood, R. J. In IEEE Int. Conf. on Intelligent Robots and Systems (IROS) 1133–1140 (IEEE/RSJ, 2012).

  2. Zou, Y., Zhang, W. & Zhang, Z. Liftoff of an electromagnetically driven insect-inspired flapping-wing robot. IEEE Trans. Robot. 32, 1285–1289 (2016).

    Google Scholar

  3. Balasubramanian, S., Chukewad, Y. M., James, J. M., Barrows, G. L. & Fuller, S. B. An insect-sized robot that uses a custom-built onboard camera and a neural network to classify and respond to visual input. In 7th IEEE Int. Conf. on Biomedical Robotics and Biomechatronics (Biorob) 1297–1302 (IEEE, 2018).

  4. Drew, D. S. & Pister, K. S. In IEEE Int. Conf. on Manipulation, Automation and Robotics at Small Scales (MARSS) 1–5 (IEEE, 2017).

  5. Jafferis, N. T., Graule, M. A. & Wood, R. J. In 2016 IEEE Int. Conf. on Robotics and Automation (ICRA) 3234–3241 (IEEE, 2016).

  6. Marden, J. H. Maximum lift production during takeoff in flying animals. J. Exp. Biol. 130, 235–258 (1987).

    Google Scholar

  7. Nachtigall, W., Hanauer-Thieser, U. & Mörz, M. Flight of the honey bee. VII: Metabolic power versus flight speed relation. J. Comp. Physiol. B 165, 484–489 (1995).

    Google Scholar

  8. Churaman, W. A., Currano, L. J., Morris, C. J., Rajkowski, J. E. & Bergbreiter, S. The first launch of an autonomous thrust-driven microrobot using nanoporous energetic silicon. J. Microelectromech. Syst. 21, 198–205 (2012).

    Google Scholar

  9. James, J., Iyer, V., Chukewad, Y., Gollakota, S. & Fuller, S. B. In IEEE Int. Conf. on Robotics and Automation (ICRA) 1–8 (IEEE, 2018).

  10. Keennon, M., Klingebiel, K. & Won, H. In 50th AIAA Aerospace Sciences Meeting including the New Horizons Forum and Aerospace Exposition 588 (AIAA, 2012).

  11. Rosen, M. H., le Pivain, G., Sahai, R., Jafferis, N. T. & Wood, R. J. In IEEE Int. Conf. on Robotics and Automation (ICRA). 3227–3233 (IEEE, 2016).

  12. de Croon, G., de Clercq, K., Ruijsink, R., Remes, B. & de Wagter, C. Design, aerodynamics, and vision-based control of the delfly. Int. J. Micro Air Veh. 1, 71–97 (2009).

    Google Scholar

  13. Karásek, M., Muijres, F. T., de Wagter, C., Remes, B. D. & de Croon, G. C. A tailless aerial robotic flapper reveals that flies use torque coupling in rapid banked turns. Science 361, 1089–1094 (2018).

    Google Scholar

  14. Hines, L. Design and Control of a Flapping Flight Micro Aerial Vehicle. PhD thesis, Carnegie Mellon Univ. (2014); https://www.ri.cmu.edu/publications/design-and-control-of-a-flapping-flight-micro-aerial-vehicle/.

  15. Steltz, E., Avadhanula, S. & Fearing, R. S. In IEEE Int. Conf. on Intelligent Robots and Systems (IROS) 3987–3992 (IEEE/RSJ, 2007).

  16. Anderson, M. L. Design and Control of Flapping Wing Micro Air Vehicles. PhD thesis, Air Force Institute of Technology Wright-Patterson AFB OH School of Engineering and Management (2011); https://apps.dtic.mil/docs/citations/ADA549053.

  17. Smith, G. L. et al. PZT-based piezoelectric MEMS technology. J. Am. Ceram. Soc. 95, 1777–1792 (2012).

    Google Scholar

  18. Jafferis, N. T., Smith, M. J. & Wood, R. J. Design and manufacturing rules for maximizing the performance of polycrystalline piezoelectric bending actuators. Smart Mater. Struct. 24, 065023 (2015).

    Google Scholar

  19. Karpelson, M., Wei, G.-Y. & Wood, R. J. Driving high voltage piezoelectric actuators in microrobotic applications. Sens. Actuators A 176, 78–89 (2012).

    Google Scholar

  20. Steltz, E., Seeman, M., Avadhanula, S. & Fearing, R. S. In Int. Conf. on Intelligent Robots and Systems 1322–1328 (IEEE/RSJ, 2006).

  21. Goldberg, B. et al. Power and control autonomy for high-speed locomotion with an insect-scale legged robot. IEEE Robot. Autom. Lett. 3, 987–993 (2018).

    Google Scholar

  22. Duduta, M., de Rivaz, S., Clarke, D. R. & Wood, R. J. Ultralightweight, high power density lithium-ion batteries. Batteries Supercaps 1, 131–134 (2018).

    Google Scholar

  23. Brühwiler, R. et al. In Int. Conf. on Intelligent Robots and Systems 5727–5733 (IEEE/RSJ, 2015).

  24. Hollar, S., Flynn, A., Bellew, C. & Pister, K. In 16th Ann. Int. Conf. on Micro Electro Mechanical Systems (MEMS-03) 706–711 (IEEE, 2003).

  25. Boucher, R. J. Sunrise, the world’s first solar-powered airplane. J. Aircr. 22, 840–846 (1985).

    Google Scholar

  26. Fuller, S. B. Four wings: an insect-sized aerial robot with steering ability and payload capacity for autonomy. IEEE Robot. Autom. Lett. 4, 570–577 (2019).

    Google Scholar

  27. van Breugel, F., Regan, W. & Lipson, H. From insects to machines. IEEE Robot. Autom. Mag. 15, 68–74 (2008).

    Google Scholar

  28. Teoh, Z. E. et al. In Int. Conf. on Intelligent Robots and Systems 3209–3216 (IEEE/RSJ, 2012).

  29. Graule, M., et al. Perching and takeoff of a robotic insect on overhangs using switchable electrostatic adhesion. Science 352, 978–982 (2016).

    Google Scholar

  30. Fuller, S. B., Helbling, E. F., Chirarattananon, P. & Wood, R. J. Using a MEMS gyroscope to stabilize the attitude of a fly-sized hovering robot. In International Micro Air Vehicle (IMAV) Conference and Competition (Delft University of Technology (TU Delft), 2014).

  31. Helbling, E. F., Fuller, S. B. & Wood, R. J. In Robotics Research 57–69 (Springer, 2018).

  32. Zhang, X. et al. In IEEE Symp. on VLSI Circuits C152–C153 (IEEE, 2015).

  33. Jafferis, N. T., Lok, M., Winey, N., Wei, G.-Y. & Wood, R. J. Multilayer laminated piezoelectric bending actuators: design and manufacturing for optimum power density and efficiency. Smart Mater. Struct. 25, 055033 (2016).

    Google Scholar

  34. Fuller, S. B. et al. Stabilizing air dampers for hovering aerial robotics: design, insect-scale flight tests, and scaling. Auton. Robots 41, 1555–1573 (2017).

    Google Scholar

  35. Jayaram, K., Jafferis, N. T., Doshi, N., Goldberg, B. & Wood, R. J. Concomitant sensing and actuation for piezoelectric microrobots. Smart Mater. Struct. 27, 065028 (2018).

    Google Scholar

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Untethered flight of an insect-sized flapping-wing microscale aerial vehicle (2024)

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