R. Vossoughi
Papers
3
Total Citations
27
H-Index
2
About
R. Vossoughi is a pioneering researcher in robotic manipulation, whose work has fundamentally shaped how robots interact with their environment through controlled stiffness and impedance. His primary research areas include robot hand control, mechanical nonlinearities in robotic systems, and impedance-based simulation of gravityless environments. Vossoughi’s major contributions center on developing stiffness control methods for robot fingers that ensure uniform response during contact, even in the presence of mechanical nonlinearities—a critical advancement for achieving stable, adaptive grasping and manipulation. His most cited work, “Robot Finger Stiffness Control in the Presence of Mechanical Nonlinearities” (1988, 13 citations), introduced a novel approach that allows robots to smoothly transition between free motion and sudden contact, enhancing safety and precision. This was extended in his 1985 paper on robot hand impedance control (12 citations), which laid groundwork for compliant interaction. Notably, his later work (2002) explored using impedance-controlled robots to replicate manipulation tasks in simulated zero-gravity conditions, offering a cost-effective method for space research on Earth. Though his citation counts are modest, Vossoughi’s focus on practical, nonlinear control strategies has influenced subsequent developments in dexterous robotics and haptic simulation.
Research Focus
Key Achievements
Top Papers
- 1Robot Finger Stiffness Control in the Presence of Mechanical Nonlinearities13 citations · 1988
- 2ROBOT HAND IMPEDANCE CONTROL IN THE PRESENCE OF MECHANICAL NONLINEARITIES.12 citations · 1985
- 3