Papers
22
Total Citations
520
H-Index
12
About
Ignacio Mas is a pioneering roboticist whose career has been defined by the development and advancement of cluster space control — a groundbreaking framework for coordinating mobile multirobot systems. His foundational 2009 paper introducing cluster space state representation (106 citations) established a conceptual architecture that simplified the specification and monitoring of multirobot formations, reshaping how researchers approach collective robot motion. Mas consistently extended this framework across increasingly complex scenarios, addressing nonholonomic systems, obstacle avoidance, and both centralized and decentralized control architectures, accumulating hundreds of citations across his body of work. A particularly notable thread in Mas's research is the translation of theory into real-world marine robotics applications. His work on dynamic guarding of marine assets using fleets of robotic kayaks (71 citations) and gradient-based navigation for autonomous surface vessels (40 citations) demonstrated that cluster space methods could solve practical, high-stakes problems in open-water environments. His contributions span entrapment, escorting, patrolling, and adaptive field navigation missions. More recently, his 2021 work incorporating dual quaternion representations signals a continued evolution of the framework toward greater mathematical sophistication. Mas's research stands as a comprehensive, experimentally validated contribution to the field of multirobot coordination.
Research Focus
Key Achievements
Top Papers
- 1Cluster Space Specification and Control of Mobile Multirobot Systems106 citations · 2009
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- 4Gradient-Based Cluster Space Navigation for Autonomous Surface Vessels40 citations · 2014
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- 6Dynamic Control of Mobile Multirobot Systems: The Cluster Space Formulation36 citations · 2014
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- 8Cluster space specification and control of a 3-robot mobile system30 citations · 2008
- 9Cluster Space Control of Autonomous Surface Vessels19 citations · 2009
- 10Dual Quaternion Cluster-Space Formation Control17 citations · 2021