Papers
28
Total Citations
271
H-Index
10
About
Trygve Thomessen is a prominent robotics researcher whose work spans industrial robot control, human-robot interaction, and intelligent manufacturing systems. Over more than two decades, he has made sustained contributions to some of the most pressing challenges in modern robotics, accumulating over 170 citations across his most recognized works. Thomessen's early research focused on force-feedback robot control systems for demanding industrial tasks, particularly the grinding and deburring of large hydraulic turbines — complex, real-world applications requiring precision and adaptability. His 2001 paper on Francis turbine grinding (23 citations) remains a landmark contribution in applied robot control. His work evolved significantly toward human-robot interaction (HRI), where he pioneered intuitive graphical user interfaces and interaction frameworks tailored for small and medium enterprises — organizations often lacking specialized robotics expertise. His HRI modeling work introduced concepts such as trust, situational awareness, and service-oriented robot operation, advancing the field's human-centered approach. More recently, Thomessen has tackled collaborative robotics safety and advanced manufacturing, including fuzzy-system-based weld bead modeling for multi-pass welding and ROS-Unity3D monitoring platforms. This breadth — from low-level force control to high-level cognitive interfaces — reflects a career dedicated to making industrial robotics more accessible, safer, and smarter for real-world deployment.
Research Focus
Key Achievements
Top Papers
- 1ROS-Unity3D based system for monitoring of an industrial robotic process30 citations · 2017
- 2Robot control system for grinding of large hydro power turbines23 citations · 2001
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- 4New trends in industrial robot controller user interfaces18 citations · 2012
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- 6Robot control system for safe and rapid programming of grinding applications16 citations · 2000
- 7Simplified Human-Robot Interaction: Modeling and Evaluation13 citations · 2013
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- 10Joint Level Collision Avoidance for Industrial Robots10 citations · 2012