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The effect of chord-wise flexibility on the aerodynamic force generation of flapping wings: Experimental studies., , , and . ICRA, page 4207-4212. IEEE, (2009)Multimodal sensor fusion for attitude estimation of micromechanical flying insects: A geometric approach., , , , and . IROS, page 3859-3864. IEEE, (2008)Editorial: Focused Areas and Future Trends of Bio-Inspired Robots Änalysis, Control, and Design for Bio-Inspired Robotics"., , , , , , and . J. Robotics Mechatronics, 24 (4): 559-560 (2012)Enhancing K-16 Science Education with Augmented Reality: A Systematic Review of Literature from 2001 to 2020., , , and . iLRN, page 1-5. IEEE, (2022)Flight Control System for a Micromechanical Flying Insect: Architecture and Implementation., , and . ICRA, page 1641-1646. IEEE, (2001)Acting Is Seeing: Navigating Tight Space Using Flapping Wings., , , and . ICRA, page 95-101. IEEE, (2019)Learning Extreme Hummingbird Maneuvers on Flapping Wing Robots., , , and . ICRA, page 109-115. IEEE, (2019)Design optimization and system integration of robotic hummingbird., , , and . ICRA, page 5422-5428. IEEE, (2017)Geometric flight control of a hovering robotic hummingbird., , , and . ICRA, page 5415-5421. IEEE, (2017)Flight Recovery of MAVs with Compromised IMU., , , , and . IROS, page 3638-3644. IEEE, (2019)