Sandeep Pandey
Papers
3
Total Citations
52
H-Index
2
About
Sandeep Pandey is a robotics and control systems researcher whose work has made meaningful contributions to the challenging problem of robot manipulator control under real-world uncertainty. His research focuses primarily on hybrid position-force control, robust control theory, and adaptive robotic systems — areas critical to deploying reliable robotic solutions in manufacturing and industrial environments. Pandey's most influential contribution, "Uncertainty bound-based hybrid control for robot manipulators" (1990), has garnered 31 citations and established a foundational framework for addressing uncertainties arising from imperfect modeling, friction, payload variation, and external disturbances in robotic control systems. Building on this groundwork, his 2003 paper on robust hybrid control demonstrated that globally practically stable control systems could be designed despite such uncertainties, earning 19 citations and reinforcing the practical applicability of his theoretical insights. His later work on real-time dynamic scaling of robotic manipulators further extended these ideas toward adaptive performance in uncertain environments, addressing growing industrial demands for flexible, reliable automation. Across his career, Pandey's research has consistently bridged theoretical control frameworks with practical robotic applications, offering engineers and researchers valuable tools for designing manipulators capable of operating robustly in unpredictable, real-world conditions.
Research Focus
Key Achievements
Top Papers
- 1Uncertainty bound-based hybrid control for robot manipulators31 citations · 1990
- 2Robust hybrid control of robot manipulators19 citations · 2003
- 3