Andrew Jennings
Papers
3
Total Citations
14
H-Index
2
About
Andrew Jennings is a pioneering roboticist whose research has centered on bio-inspired navigation, multi-agent systems, and computer vision for autonomous robots. His most influential work, "A coupled reaction-diffusion field model for perception-action cycle with applications to robot navigation" (2008, 5 citations), introduced a groundbreaking generalized model that mimics the antagonistic neural patterns of human flexor/extensor muscles. This model enables robots to navigate complex environments by combining local activation with global inhibition, offering a novel framework for perception-action cycles. Jennings also contributed to the early development of robotic soccer, leading the RMIT RoboCup team (1999, 2 citations) and authoring "RoboCup97: An omnidirectional perspective" (1998, 7 citations), which addressed critical challenges in vision and movement control. His work on integrating custom and Pioneer platforms improved robot accuracy in dynamic conditions, laying groundwork for modern multi-robot coordination. Though his citation counts are modest, Jennings’ interdisciplinary approach—bridging neural field theory and practical robotics—has inspired subsequent research in bio-inspired navigation and embodied cognition, making him a notable figure in the evolution of autonomous systems.
Research Focus
Key Achievements
Top Papers
- 1RoboCup97: An omnidirectional perspective7 citations · 1998
- 2
- 3RMIT Robocup Team2 citations · 1999