Philippe Poignet
University of Montpellier
221 Papers
1.4K Citations
Philippe Poignet is an academic researcher from University of Montpellier. The author has contributed to research in topics: Computer science & Teleoperation. The author has an hindex of 30, co-authored 207 publications. Previous affiliations of Philippe Poignet include Centre national de la recherche scientifique.
Chat about Author
Papers
Optimal Design of a 4-DOF Parallel Manipulator: From Academia to Industry
TL;DR: An optimal design of a parallel manipulator aiming to perform pick-and-place operations at high speed and high acceleration is presented, with an articulated traveling plate, which is free of internal singularities and is able to achieve high performances.
321
Joint angle estimation in rehabilitation with inertial sensors and its integration with Kinect
Antonio Padilha Lanari Bo,Mitsuhiro Hayashibe,Philippe Poignet +2 more
- 01 Dec 2011
TL;DR: A new method based on Kalman filtering was developed in order to perform online calibration of sensor errors automatically whenever measurements from Kinect are available.
Unsupervised Trajectory Segmentation for Surgical Gesture Recognition in Robotic Training
Fabien Despinoy,David Bouget,Germain Forestier,Cédric Penet,Nabil Zemiti,Philippe Poignet,Pierre Jannin +6 more
TL;DR: A new unsupervised algorithm that can automatically segment kinematic data from robotic training sessions and obtain an accurate recognition of the gestures involved in the surgical training task is proposed.
Predictive functional control for a parallel robot
A. Vivas,Philippe Poignet,François Pierrot +2 more
- 27 Oct 2003
TL;DR: Predictive functional control, computed torque control and PID control strategies are compared in complex machining tasks trajectories and the tracking performances are enlightened.
Predictive functional control of a parallel robot
Andrés Vivas,Philippe Poignet +1 more
TL;DR: In this article, a predictive functional control strategy based on a simplified dynamic model is implemented for the H4 robot, a fully parallel structure providing 3 degrees of freedom (dof) in translation and 1 dof in rotation.
101