Guangping Lan
Papers
5
Total Citations
44
H-Index
3
About
Guangping Lan is a robotics researcher whose work has centered on the design and development of innovative mobile robotic systems capable of navigating challenging and unstructured environments. His most significant contributions lie in the areas of crawler mechanism design, serpentine robotics, and terrain-adaptive locomotion systems. Lan's most influential work, "Development of a novel crawler mechanism with polymorphic locomotion" (2007, 20 citations), introduced a groundbreaking crawler design that achieves two distinct locomotion outputs using a single actuator through a planetary gear reducer — a elegant engineering solution that simplified mechanical complexity while enhancing versatility. This concept was further explored in his quasi-static and step-climbing analyses, demonstrating rigorous mechanical validation of his designs. His serpentine robot research, featuring a three-degrees-of-freedom coupled-driven joint (13 citations), addressed real-world disaster response needs, specifically targeting search-and-rescue operations in earthquake rubble — highlighting a strong humanitarian motivation behind his technical work. Across his five most-cited publications, Lan has accumulated over 40 citations, reflecting steady recognition within the mobile robotics community. His body of work is particularly valuable for researchers and students studying bio-inspired locomotion, rescue robotics, and adaptive mechanical systems for irregular terrain navigation.
Research Focus
Key Achievements
Top Papers
- 1Development of a novel crawler mechanism with polymorphic locomotion20 citations · 2007
- 2A Serpentine Robot Based on 3 DOF Coupled-driven Joint13 citations · 2005
- 3Quasi-Static Analysis of a Novel Crawler-Driven Robot Motion6 citations · 2006
- 4Step-climbing analysis of a novel tracked robot3 citations · 2005
- 5Development of a novel crawler for irregular terrain access2 citations · 2005