Vahid Razmavar
Papers
1
Total Citations
3
H-Index
1
About
Vahid Razmavar is a researcher whose work sits at the intersection of advanced robotics, control theory, and applied mathematics. His primary research areas include adaptive and robust control of robotic systems, impedance control for human-robot interaction, and the application of novel function approximation techniques—such as the (p,q)-analogue of Bernstein-Stancu operators—to solve complex engineering problems. Razmavar’s major contribution lies in developing robust adaptive impedance control frameworks for coordinated, electrically driven robots, enabling multiple manipulators to handle objects compliantly without requiring precise dynamic models. This approach significantly enhances the safety and adaptability of robotic systems in real-world tasks. His most-cited paper, "Robust adaptive impedance control of coordinated electrically driven robots: An engineering application for the (p,q)-analogue of Bernstein-Stancu operators" (2024), has already garnered 3 citations, reflecting growing interest in his innovative fusion of mathematical operators with practical control design. By addressing the critical challenge of model uncertainty in multi-robot coordination, Razmavar is paving the way for more resilient and intelligent automation systems, making his work highly relevant for students and researchers in robotics, nonlinear control, and mathematical engineering.
Research Focus
Key Achievements
Top Papers
- 1