Papers
2
Total Citations
38
H-Index
2
About
Xinxing Mu is a researcher in aerospace engineering, specializing in the design, modeling, and control of bio-inspired flapping-wing robotic aircraft. His work bridges structural mechanics and aerodynamics to advance the performance of micro air vehicles. Mu’s most influential contribution is his 2018 paper on modeling and vibration control of flapping-wing robots under output constraints, which has garnered 34 citations—a strong impact for a specialized topic. This work addresses critical challenges in stabilizing flexible wing structures during flight, offering control strategies that ensure safe operation within physical limits. More recently, his 2022 study on the structural design and aerodynamic characteristics of two types of foldable flapping wings explores novel wing configurations that enhance maneuverability and storage efficiency. By integrating practical constraints with theoretical modeling, Mu’s research helps push flapping-wing technology closer to real-world applications in surveillance, environmental monitoring, and search-and-rescue. His work is particularly valuable for students and engineers interested in the intersection of robotics, aerodynamics, and control theory.
Research Focus
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Top Papers
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