Papers
44
Total Citations
760
H-Index
17
About
Patrizio Pelliccione is a prominent researcher at the intersection of software engineering, robotics, and autonomous systems, whose work has profoundly shaped how complex, intelligent systems are designed and engineered. His research spans mobile robotic systems, model-driven engineering (MDE), self-adaptive systems, and Industry 4.0 architectures — areas where rigorous software engineering principles meet cutting-edge automation challenges. Pelliccione has made significant contributions to the systematic study of safety and quality in robotic software, including a widely recognized systematic mapping study on safety for mobile robotic systems (65 citations) and a comprehensive survey on model-driven engineering for robotics (41 citations). His architectural work on decentralized, collaborative autonomous robots (37 citations) has provided foundational frameworks enabling robots to operate adaptively in complex environments, while his research on multi-robot mission specification and LTL planning under uncertainty addresses critical challenges in real-world deployment. His 2022 Quality 4.0 model for Industry 4.0 systems (45 citations) reflects his expanding influence in smart manufacturing. Work on software variability in service robotics further demonstrates his commitment to making robotic software more modular and reusable. With a substantial and growing citation record across over a decade of research, Pelliccione stands as a leading voice in engineering trustworthy, adaptable, and intelligent autonomous systems.
Research Focus
Key Achievements
Top Papers
- 1
- 2A Quality 4.0 Model for architecting industry 4.0 systems45 citations · 2022
- 3
- 4An Architecture for Decentralized, Collaborative, and Autonomous Robots37 citations · 2018
- 5High-level mission specification for multiple robots36 citations · 2019
- 6
- 7Software variability in service robotics29 citations · 2022
- 8Multi-robot LTL Planning Under Uncertainty27 citations · 2018
- 9
- 10Variability Modeling of Service Robots25 citations · 2019