Papers
9
Total Citations
228
H-Index
6
About
Javier Felip is a roboticist whose research focuses on enabling robots to grasp and manipulate objects under real-world uncertainty. His core contributions lie at the intersection of sensor-based control, perception under incomplete observation, and human-robot collaboration. Felip’s most influential work, “Mind the gap - robotic grasping under incomplete observation” (109 citations), tackles the fundamental challenge of picking up unknown objects from a tabletop when the robot’s knowledge of the world is partial. He introduced a novel approach to object shape prediction that “closes the knowledge gaps” in the robot’s understanding, allowing for successful grasping despite missing sensory data. His earlier work on robust sensor-based grasp primitives (72 citations) developed a controller that uses feedback from contact-based sensors to handle uncertainty during grasping with a three-finger hand. Felip also contributed to multi-sensor fusion for contact detection and localization, and to the design of Tombatossals, the UJI humanoid torso, a platform for reproducible research in autonomous sensor-based tasks. More recently, he has explored intuitive human-robot collaboration using real-time approximate Bayesian inference. With over 200 total citations, Felip’s work has advanced the practical deployment of robots in unstructured environments, making him a key figure in sensor-based manipulation.
Research Focus
Key Achievements
Top Papers
- 1Mind the gap - robotic grasping under incomplete observation109 citations · 2011
- 2Robust sensor-based grasp primitive for a three-finger robot hand72 citations · 2009
- 3Sensors and Methods for the Evaluation of Grasping10 citations · 2012
- 4Multi-sensor and prediction fusion for contact detection and localization10 citations · 2014
- 5Embodiment independent manipulation through action abstraction7 citations · 2010
- 6Simulation of robot dynamics for grasping and manipulation tasks6 citations · 2012
- 7Tombatossals: A humanoid torso for autonomous sensor-based tasks6 citations · 2015
- 8
- 9Contact localization through robot and object motion from point clouds3 citations · 2013