Paolo Renna
Papers
2
Total Citations
19
H-Index
2
About
Paolo Renna’s research focuses on the design and optimization of flexible, fault-tolerant manufacturing systems, with a particular emphasis on assembly lines and flow line configurations. His major contributions lie in developing models that enhance production robustness and efficiency, especially through the integration of fractional tasks, parallel workstations, and redundant configurations. Renna’s work addresses critical challenges in modern manufacturing, such as minimizing throughput loss caused by equipment failures and high investment costs. His 2023 paper on assembly line design, which has garnered 10 citations, proposes a model that leverages robots and cobots to improve productivity while maintaining quality. Similarly, his 2018 study on redundant configurations and backup stations, with 9 citations, provides strategies for supporting fault-tolerant flow lines, reducing downtime and operational risks. Renna’s research is highly relevant for industries adopting automation and collaborative robotics, offering practical solutions to enhance system resilience. His work is notable for bridging theoretical design models with real-world manufacturing challenges, making him a key contributor to the field of production systems engineering.
Research Focus
Key Achievements
Top Papers
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