Jing Shu
Papers
8
Total Citations
99
H-Index
5
About
Jing Shu is a pioneering roboticist whose research bridges aerial robotics, soft robotics, and intelligent sensing. Her work centers on developing reconfigurable and perceptive robotic systems that can adapt to challenging environments. In aerial robotics, she introduced a quadrotor with a passively reconfigurable airframe capable of rolling through gaps narrower than its diameter—a breakthrough for collision resilience in cluttered spaces (38 citations). In soft robotics, she has made transformative contributions to posture perception, developing kirigami-inspired flexible sensors and end-to-end LSTM neural network methods that enable precise closed-loop control of soft actuators (24, 14, and 10 citations). Her recent work on magnetoelastic strain sensors achieves stable sensing under 200% deformation, pushing the boundaries of highly deformed posture perception (6 citations). Shu’s research also explores 3D-printed kirigami structures, portable ankle-foot orthoses, and quadruped robots with retractable variable stiffness manipulators. With a portfolio spanning from fundamental sensor design to integrated robotic systems, Jing Shu is advancing the frontier of adaptive, perceptive, and resilient robots for real-world applications.
Research Focus
Key Achievements
Top Papers
- 1
- 2
- 3
- 4
- 5
- 6
- 7
- 8