Shuyue Sun
Papers
1
Total Citations
9
H-Index
1
About
Shuyue Sun is a rising researcher in bio-inspired robotics and fluid dynamics, with a focus on developing efficient, biologically plausible locomotion systems. Their work centers on the kinematic and hydrodynamic modeling of robotic fish, particularly wire-driven mechanisms that mimic natural swimming motions. Sun’s most-cited paper, “Kinematic and hydrodynamic modeling of a wire-driven robotic fishtail: An experimental study” (2023, 9 citations), provides foundational insights into how flexible, cable-actuated tails can optimize thrust and maneuverability in underwater robots. This research bridges experimental validation with theoretical modeling, offering practical design guidelines for soft robotics and autonomous underwater vehicles. By systematically analyzing tail-beat frequency, amplitude, and fluid-structure interactions, Sun has contributed to advancing the efficiency of bio-inspired propulsion systems. Their work is particularly notable for its potential applications in environmental monitoring, marine exploration, and search-and-rescue operations. Though early in their career, Sun’s experimental approach and focus on wire-driven mechanisms mark them as a promising voice in the field, with implications for both robotics and biomechanics. Their research continues to inspire new directions in energy-efficient, animal-like robotic design.
Research Focus
Key Achievements
Top Papers
- 1