Michael Schuresko
Papers
5
Total Citations
129
H-Index
5
About
Michael Schuresko is a leading researcher in distributed robotics, with a primary focus on connectivity maintenance and coordination in multi-agent systems. His work addresses a fundamental challenge: how robotic networks can preserve communication links while executing collective motions. Schuresko’s major contributions include pioneering distributed algorithms that allow robots to decide in real-time whether a desired movement will break network connectivity—a critical capability for swarm robotics and autonomous exploration. His most cited paper, "Distributed Motion Constraints for Algebraic Connectivity of Robotic Networks" (2009, 71 citations), introduced a novel framework for maintaining algebraic connectivity under discrete-time communication and continuous-space dynamics. He further advanced the field with "Distributed Tree Rearrangements for Reachability and Robust Connectivity" (2012, 26 citations), which proposed algorithms for dynamically restructuring network topologies to ensure both reachability and robustness. Schuresko’s work is notable for its practical approach to imperfect information scenarios, making his algorithms applicable to real-world robotic systems. With over 129 total citations across his key publications, his research has significantly influenced the design of resilient, decentralized robotic networks, earning him recognition as a key contributor to distributed coordination theory.
Research Focus
Key Achievements
Top Papers
- 1
- 2Distributed Tree Rearrangements for Reachability and Robust Connectivity26 citations · 2012
- 3Safe graph rearrangements for distributed connectivity of robotic networks14 citations · 2007
- 4Distributed Tree Rearrangements for Reachability and Robust Connectivity10 citations · 2009
- 5