Home /Research /Forward Kinematic Modeling of Conical-Shaped Continuum Manipulators
MANIPULATION

Forward Kinematic Modeling of Conical-Shaped Continuum Manipulators

Audrey Hyacinthe Bouyom Boutchouang, Achille Melingui, Joseph Jean-Baptiste Mvogo Ahanda, Othman Lakhal, Frédéric Biya Motto, Rochdi Merzouki

Year
2021
Citations
11

Abstract

SUMMARY Forward kinematics is essential in robot control. Its resolution remains a challenge for continuum manipulators because of their inherent flexibility. Learning-based approaches allow obtaining accurate models. However, they suffer from the explosion of the learning database that wears down the manipulator during data collection. This paper proposes an approach that combines the model and learning-based approaches. The learning database is derived from analytical equations to prevent the robot from operating for long periods. The database obtained is handled using Deep Neural Networks (DNNs). The Compact Bionic Handling robot serves as an experimental platform. The comparison with existing approaches gives satisfaction.

Keywords

KinematicsFlexibility (engineering)Robot manipulatorComputer scienceArtificial intelligenceRobotRoboticsConical surfaceControl engineeringEngineering

Related papers

Browse all MANIPULATION papers