Maxime Godon
Papers
4
Total Citations
54
H-Index
3
About
Maxime Godon is a researcher in algorithmic robotics and distributed computing, focusing on the theoretical foundations of multi-agent systems operating under uncertainty. His work primarily addresses search and exploration problems where robots are unreliable—either faulty, adversarial, or constrained by time—on discrete structures like graphs, cycles, and discs. Godon’s most impactful contribution, "Evacuation from a Disc in the Presence of a Faulty Robot" (2017, 42 citations), introduces a novel framework for coordinating a team of mobile robots to evacuate a circular region when one robot may fail, establishing optimal strategies that balance speed and fault tolerance. This paper has become a cornerstone in the study of fault-tolerant search. He further extends these ideas in "Group search of the plane with faulty robots" (2018, 6 citations) and "Searching for a non-adversarial, uncooperative agent on a cycle" (2019, 4 citations), where he models realistic scenarios of uncooperative or time-constrained agents. His work on "Exploring Graphs with Time Constraints by Unreliable Collections of Mobile Robots" (2017, 2 citations) tackles the challenge of exploration under deadlines, offering algorithms that guarantee coverage despite robot failures. Godon’s research is essential for designing resilient robotic swarms in hazardous environments, such as disaster response or planetary exploration.
Research Focus
Key Achievements
Top Papers
- 1Evacuation from a Disc in the Presence of a Faulty Robot42 citations · 2017
- 2Group search of the plane with faulty robots6 citations · 2018
- 3Searching for a non-adversarial, uncooperative agent on a cycle4 citations · 2019
- 4