Libor Spacek
Papers
6
Total Citations
78
H-Index
5
About
Libor Spacek’s research centers on omnidirectional vision, robot localization, and adaptive control systems for autonomous robotics. His most influential work, “Instantaneous robot self-localization and motion estimation with omnidirectional vision” (2007, 24 citations), introduced a method enabling robots to determine their position and movement in real time using a single omnidirectional camera—a key contribution to efficient, low-cost navigation. Spacek also pioneered novel sensor designs, such as the catadioptric system with multiple viewpoints (2005, 20 citations), which expanded the field’s understanding of wide-angle imaging. In reactive robotics, he developed a learning fuzzy logic controller (2004, 17 citations) that apportioned delayed rewards to individual rules, allowing robots to adapt behaviors from real-world feedback. His adaptive color segmentation algorithm for Sony legged robots (2003, 7 citations) combined Self-Organizing Maps and neural networks to handle dynamic lighting during robot football. Spacek further advanced simulation tools with an omnidirectional vision simulator (2005, 6 citations) that tested coaxial omnistereo configurations without expensive hardware. His work on monocular omnidirectional SLAM (2008, 4 citations) contributed to mapping and localization in unstructured environments. Across these contributions, Spacek’s research has shaped practical, vision-based autonomy for mobile robots.
Research Focus
Key Achievements
Top Papers
- 1
- 2A catadioptric sensor with multiple viewpoints20 citations · 2005
- 3Learning fuzzy logic controller for reactive robot behaviours17 citations · 2004
- 4An adaptive color segmentation algorithm for sony legged robots7 citations · 2003
- 5Omnidirectional Vision Simulation and Robot Localisation6 citations · 2005
- 6Monocular Omnidirectional Vision based Robot Localisation and Mapping.4 citations · 2008