R.A. Willgoss
Papers
6
Total Citations
43
H-Index
4
About
R.A. Willgoss is a pioneering robotics researcher whose work spans autonomous navigation, precision guidance, and bipedal locomotion. His most influential contribution, "High Precision GPS Guidance of Mobile Robots" (2003, 17 citations), established foundational methods for using differential GPS to achieve sub-meter accuracy in applications such as agricultural positioning, formation movement, and stevedoring. This work remains essential for researchers developing outdoor autonomous systems requiring reliable, cost-effective localization. Willgoss also made significant theoretical contributions to rigid body motion analysis. His 1990 paper "Comparison of Methods for Determining Screw Parameters of Infinitesimal Rigid Body Motion From Position and Velocity Data" (14 citations) systematically evaluated five computational approaches for extracting instantaneous motion parameters, providing crucial guidance for subsequent work in kinematics and robot control. His research portfolio further demonstrates remarkable breadth, including innovative sensor fusion for precision docking using infrared and laser guidance (2007), neurofuzzy learning for adaptive robot behaviors (1999), and distributed hierarchical control for walking biped robots (2003). His work on offline path planning for redundant manipulators (2002) addressed critical challenges in obstacle avoidance. With over 40 total citations across his most recognized papers, Willgoss has left a lasting imprint on mobile robotics, particularly in the integration of GPS-based navigation with precision control systems.
Research Focus
Key Achievements
Top Papers
- 1High precision GPS guidance of mobile robots17 citations · 2003
- 2
- 3Precision Docking of a Mobile Robot Using Infrared and Laser Guidance4 citations · 2007
- 4Neurofuzzy Learning of Mobile Robot Behaviours4 citations · 1999
- 5Walking biped robot with distributed hierarchical control system2 citations · 2003
- 6