Mete Kalyoncu
Papers
27
Total Citations
538
H-Index
13
About
Mete Kalyoncu is a prominent robotics and control systems researcher whose work spans flexible robot manipulators, wearable exoskeletons, and legged robotic systems. His research has made significant contributions to the design and intelligent control of complex mechanical systems, blending advanced mathematical modeling with nature-inspired optimization techniques. Kalyoncu's early foundational work focused on flexible robot manipulators, producing highly cited studies on mathematical modeling of multi-path tracing systems and fuzzy logic control optimized through the Bees Algorithm (67 and 52 citations, respectively). His investigations into neuro-fuzzy and automatic control design further demonstrated the power of bio-inspired algorithms in solving intricate robotics challenges, with his manipulator control work accumulating over 46 citations. A major strand of his research addresses lower extremity exoskeletons for spinal cord injured individuals, with his 2013 design and actuator selection paper earning 94 citations — his most impactful work to date. More recently, Kalyoncu has advanced quadruped robot locomotion, applying Grey Wolf Optimizer algorithms to develop sophisticated hybrid LQR-PID controllers for stable foot trajectory control. Collectively, his publications reflect a career dedicated to bridging theoretical modeling and practical robotic implementation, making his work highly valuable for researchers and engineers working in rehabilitation robotics, legged locomotion, and intelligent control systems.
Research Focus
Key Achievements
Top Papers
- 1Design and Actuator Selection of a Lower Extremity Exoskeleton94 citations · 2013
- 2
- 3
- 4
- 5
- 6Inverse Kinematic Analysis Of A Quadruped Robot30 citations · 2017
- 7Design and Motion Control of a Lower Limb Robotic Exoskeleton24 citations · 2017
- 8Modelling of neurofuzzy control of a flexible link23 citations · 2010
- 9
- 10