Papers
5
Total Citations
92
H-Index
4
About
Crystal Winston is a pioneering roboticist whose work spans aerial-aquatic systems, in-pipe inspection, planetary exploration, and soft robotics. Her most recognized contribution is the MEDUSA robot (45 citations), a multi-environment dual-robot designed for underwater sample acquisition, addressing the fundamental challenges of operating seamlessly in both air and water. She also developed a practical minimalism approach to in-pipe robot localization (20 citations), advancing leak detection in water infrastructure. Winston’s ReachBot concept (14 citations) introduces a small robot with exceptional reach for rough terrain, using extendable arms and spined grippers for planetary exploration. Her work on self-sensing cellulose structures (12 citations) integrates design-controlled stiffness for soft robots operating in vulnerable environments, while her latest project, Flying Vines (2025), proposes a lightweight soft aerial robotic arm for inspection in hard-to-reach areas. With over 90 total citations and a focus on practical, minimalistic design, Winston’s research consistently pushes the boundaries of robot adaptability and environmental interaction, making her a rising leader in field robotics.
Research Focus
Key Achievements
Top Papers
- 1MEDUSA: A Multi-Environment Dual-Robot for Underwater Sample Acquisition45 citations · 2020
- 2A Practical Minimalism Approach to In-pipe Robot Localization20 citations · 2019
- 3ReachBot: A Small Robot with Exceptional Reach for Rough Terrain14 citations · 2022
- 4Self-Sensing Cellulose Structures With Design-Controlled Stiffness12 citations · 2021
- 5Flying Vines: Design, Modeling, and Control of a Soft Aerial Robotic Arm1 citations · 2025