Lothar Seybold
Papers
5
Total Citations
131
H-Index
4
About
Lothar Seybold’s research focuses on the intersection of fault-tolerant control, discrete event systems, and industrial automation, with a particular emphasis on battery assembly systems. His most cited work, “Towards Robust Predictive Fault–Tolerant Control for a Battery Assembly System” (2015, 77 citations), establishes a foundation for modeling and controlling complex manufacturing processes using max-plus algebra and model predictive control. Seybold’s contributions are deeply practical, stemming from his collaboration with RAFI GmbH, a leading German electronic manufacturing service provider, where he developed real-time control frameworks that can detect and compensate for faults without halting production. His subsequent papers, including “A fault-tolerant approach to the control of a battery assembly system” (2016, 43 citations), extend this work by integrating interval analysis to handle system uncertainties. With a total of over 130 citations across his key publications, Seybold’s research is highly regarded in the fields of industrial control and manufacturing systems. His work not only advances theoretical understanding of predictive fault-tolerant control but also delivers tangible solutions for improving reliability and efficiency in real-world assembly lines, making him a notable figure in applied control engineering.
Research Focus
Key Achievements
Top Papers
- 1
- 2A fault-tolerant approach to the control of a battery assembly system43 citations · 2016
- 3Predictive fault-tolerant control for a battery assembly system4 citations · 2015
- 4
- 5A fault-tolerant approach to the control of a battery assembly system3 citations · 2016