Seunggon Lee
Papers
3
Total Citations
122
H-Index
3
About
Seunggon Lee is a pioneering researcher at the intersection of bioinspired robotics, soft electronics, and intelligent control systems. His work focuses on developing highly durable, flexible sensors and actuators that enable small-scale robots to perceive and interact with their environment in unprecedented ways. Lee’s most influential contribution is the creation of an ultra-stable, tough crack-based tactile sensor inspired by biological mechanoreceptors, which has garnered 68 citations and addresses a critical challenge in mounting durable, sensitive sensors on sub-kilogram legged robots. He further advanced the field by demonstrating wing-strain-based flight control in flapping-wing drones using reinforcement learning (42 citations), a breakthrough that mimics insects’ campaniform sensilla to achieve dynamic, wind-sensing flight control. Most recently, Lee has introduced deployable electronics with enhanced fatigue resistance for crumpling and tension (12 citations), enabling electronics that can be tightly packed and robustly deployed—a key innovation for space-constrained robotics and deployable systems. His work is notable for translating biological sensing principles into practical, high-performance robotic systems, with clear applications in agile robotics, autonomous drones, and deployable technology.
Research Focus
Key Achievements
Top Papers
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