Attila L. Bencsik
Papers
11
Total Citations
38
H-Index
4
About
Attila L. Bencsik is a researcher specializing in robotics, mechatronics, and intelligent control systems, with decades of contributions spanning from foundational robot mechanics to cutting-edge bio-mechatronics. His work has consistently bridged theoretical modeling and practical engineering, most notably through his development of precise mathematical models for DC servo motors applied in SCARA robots, which garnered 8 citations and remains his most influential contribution. Bencsik has made significant strides in adaptive and fractional-order control strategies for robot manipulators, including master-slave force-constrained systems — work that reflects both his early and enduring interest in sophisticated control architectures. His research into multi-agent mobile robot systems and autonomous path generation demonstrates a forward-thinking engagement with artificial intelligence and swarm robotics. Further contributions to linear filtering in industrial robot control and investigations into robot arm rigidity underscore his broad mechanical and systems-level expertise. Later work on maintenance of complex automated systems and development trends in bio-mechatronics reveals an evolving research vision that embraces rehabilitation technology and human-machine integration. While his citation counts remain modest, Bencsik's career represents a sustained and technically rich engagement with the full lifecycle of robotic systems design and control.
Research Focus
Key Achievements
Top Papers
- 1
- 2
- 3Application of Linear Filtering in Industrial Robot Control5 citations · 2005
- 4Investigation of robot arm rigidity4 citations · 1993
- 5Maintenance of complex automated systems3 citations · 2012
- 6
- 7Mathematical model based investigation on DC servo robot drives2 citations · 2002
- 8Fractional order adaptive control for manipulator systems2 citations · 2009
- 9A new path generation method for autonomous in-door and out-door robots2 citations · 2010
- 10Development trends in bio-mechatronics2 citations · 2016