Home /Research /Modeling of Spacecraft-Mounted Robot Dynamics and Control Using Dual Quaternions
OTHER

Modeling of Spacecraft-Mounted Robot Dynamics and Control Using Dual Quaternions

Alfredo Valverde, Panagiotis Tsiotras

Year
2018
Citations
11

Abstract

Dual quaternions (DQ) provide a compact representation of position and attitude. They have been extensively used in fixed-base robotics due to their numerous computational advantages. This paper aims to develop the dynamic equations of motion of a robotic arm on a free-flying spacecraft using a Newton-Euler approach in a DQ modeling framework. A pose-stabilization maneuver for the end-effector is found via Differential Dynamic Programming (DDP). The results of this simulation are provided.

Keywords

QuaternionSpacecraftDual quaternionDual (grammatical number)RobotComputer scienceAttitude controlDynamics (music)Robot kinematicsMobile robot

Related papers

Browse all OTHER papers