Spyros Reveliotis
Papers
10
Total Citations
49
H-Index
5
About
Spyros Reveliotis is a leading figure in the modeling, analysis, and control of discrete event systems (DES), with a particular focus on the coordination and traffic management of networked mobile robotic systems operating in constrained environments. His foundational work on switched DES introduced novel representational frameworks for supervisory control, enabling more efficient enforcement of behavioral constraints. Reveliotis has made seminal contributions to the problem of *min-time coverage in constricted environments*, where fleets of robots must perform inspection or service tasks in tight, guidepath-bound spaces. He has systematically addressed the computational complexity, combinatorial optimization, and heuristic solution approaches for these problems, with key results appearing in a series of papers from 2021 to 2024. His research on *guidepath-based transport systems*—applicable to industrial logistics, quantum computing qubit transport, and computer animation—has advanced the understanding of traffic liveness and optimal liveness enforcement, achieving polynomial-time solutions for previously intractable problems. With over 50 citations across his most-cited works, Reveliotis’s contributions bridge rigorous theoretical foundations and practical algorithmic design, making him a pivotal researcher in robotic coordination and DES control.
Research Focus
Key Achievements
Top Papers
- 1Invariant-Based Supervisory Control of Switched Discrete Event Systems12 citations · 2016
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