Ron J. Patton
Papers
4
Total Citations
100
H-Index
4
About
Ron J. Patton is a leading authority in control engineering, with his most impactful work centered on **sliding mode control** and **fault-tolerant control (FTC)** . His seminal paper, "Sliding Mode Control" (2007, 64 citations), helped cement sliding mode theory as a cornerstone of modern control, demonstrating its critical applications in power electronics, motion control, robotics, and bioprocess systems. Patton’s major contributions extend to advancing **active FTC**, where he pioneered the integration of robust fault estimation with controller design to maintain system stability despite component failures. His innovative work on **LPV pole-placement for friction compensation** (2012, 23 citations) exemplifies his approach to solving real-world FTC problems, showing how model-based schemes can handle nonlinearities like friction without requiring system shutdown. By bridging theoretical rigor with practical implementation, Patton has shaped how engineers design resilient control systems for safety-critical applications. His research continues to influence the development of intelligent, self-repairing control architectures, making him a key figure for students and researchers exploring robust and fault-tolerant control strategies.
Research Focus
Key Achievements
Top Papers
- 1Sliding Mode Control64 citations · 2007
- 2An LPV pole-placement approach to friction compensation as an FTC problem23 citations · 2012
- 3Fault estimation and MRC-based active FTC9 citations · 2011
- 4