Papers
2
Total Citations
31
H-Index
2
About
Laurent Hardouin is a leading figure in the fields of discrete event systems, control theory, and fault diagnosis, with a particular focus on max-plus algebra and set-membership methods. His most influential work, "Model-based approach for fault diagnosis using set-membership formulation" (2016, 18 citations), introduces a robust framework for detecting and isolating faults in complex systems by leveraging interval analysis and guaranteed parameter estimation. This approach is especially valuable for systems where uncertainty and nonlinearity challenge traditional diagnostic methods. Hardouin has also contributed significantly to the broader control and automation community, notably through his editorial work on "Informatics in Control, Automation and Robotics" (2008, 13 citations), which helped shape contemporary research directions. His research bridges theoretical rigor and practical application, offering engineers powerful tools for ensuring system reliability. With a career dedicated to advancing the mathematical foundations of control and diagnosis, Hardouin’s work continues to inspire researchers in both academic and industrial settings, particularly those tackling real-time monitoring and safety-critical systems.
Research Focus
Key Achievements
Top Papers
- 1Model-based approach for fault diagnosis using set-membership formulation18 citations · 2016
- 2Informatics in Control, Automation and Robotics13 citations · 2008