Abdenour Labed
Papers
2
Total Citations
15
H-Index
2
About
Abdenour Labed is a robotics researcher whose work focuses on the synthesis and optimization of robotic manipulation, particularly for closed-chain systems and multifingered grasps. His key contributions lie in developing computational methods for generating optimal dynamic motions in constrained robotic architectures, and in advancing grasp synthesis for dexterous manipulation. In his 2005 paper on generating optimal dynamic motions for closed-chain robotic systems—which has garnered 11 citations—Labed introduced a framework for computing efficient, physically feasible trajectories in robots with kinematic loops, addressing a fundamental challenge in robotic control. His 2010 work on stochastic optimization-based multifingered grasp synthesis, cited 4 times, proposed a novel approach for computing suboptimal grasps of polyhedral objects using Coulomb friction models and central axes of the grasp wrench. In this paper, he developed a new necessary and sufficient condition for n-finger grasps to achieve force-closure, providing a rigorous theoretical foundation for robust grasping. Labed’s research bridges motion planning and manipulation, offering practical algorithms that enhance the autonomy and reliability of robotic systems. His work is valuable for students and researchers interested in optimization-driven robotics, grasp theory, and the intersection of dynamics and control in complex robotic tasks.
Research Focus
Key Achievements
Top Papers
- 1Generating optimal dynamic motions for closed-chain robotic systems11 citations · 2005
- 2