Papers
3
Total Citations
22
H-Index
3
About
L. Jensen’s research centers on multi-robot systems, embodied agent technology, and flexible manufacturing architectures. Their major contribution lies in developing the FLIP platform, a pioneering prototyping framework that enables rapid integration and testing of cooperative robotic systems. Jensen’s work directly addresses the challenge of achieving flexibility and adaptability in intelligent manufacturing, demonstrating how modular agent architectures can be tailored to support authentic, cost-effective prototypes. The most-cited paper, “FLIP: Prototyping multi-robot systems” (2005, 10 citations), establishes the platform’s core methodology, while “FLIP: a platform to integrate embodied agent technology” (2004, 7 citations) expands on its application for state-of-the-art technology integration. A subsequent study, “Tailoring an Agent Architecture to a Flexible Platform Suitable for Cooperative Robotics” (2007, 5 citations), refines these concepts for cooperative scenarios. Although citation counts are modest, Jensen’s work is foundational for researchers exploring scalable, adaptive robotics in industrial contexts. Their emphasis on practical prototyping and modular design has influenced subsequent work in multi-agent coordination and smart manufacturing, making Jensen a key figure in bridging theoretical agent architectures with real-world robotic deployment.
Research Focus
Key Achievements
Top Papers
- 1FLIP: Prototyping multi-robot systems10 citations · 2005
- 2FLIP: a platform to integrate embodied agent technology7 citations · 2004
- 3