Yunguang Luan
Papers
4
Total Citations
38
H-Index
3
About
Yunguang Luan is a robotics researcher whose work focuses on novel actuation mechanisms for field robots, particularly those designed for high-mobility tasks like hopping and obstacle negotiation. His key research areas include dielectric elastomer actuators (DEAs), gas-fuel-powered hopping systems, and bio-inspired robotic joints. Luan’s major contributions include the design and implementation of a cone dielectric elastomer actuator with a double-slider mechanism (16 citations), which advanced soft actuator technology for compact, muscle-like motion. He also developed a gas-fuel-powered actuator for robotic hoppers (15 citations), enabling robots to overcome obstacles many times their own size—a critical capability for exploration in rugged environments. Additionally, Luan designed a 2-DOF rotary joint based on dielectric elastomers (5 citations), mimicking biological joints for multi-degree-of-freedom rotation. His work on hopping robots has been experimentally evaluated on different terrains (2 citations), demonstrating practical viability. By combining soft materials with fuel-powered systems, Luan has pushed the boundaries of actuator design, offering efficient, high-force solutions for field robotics. His research bridges the gap between biological inspiration and engineering reality, making him a notable contributor to the advancement of autonomous, agile robots for challenging environments.
Research Focus
Key Achievements
Top Papers
- 1
- 2
- 3A rotary joint based on dielectric elastomer5 citations · 2013
- 4Hopping ability of gas fuel powered hopping robot on different grounds2 citations · 2016