Home /Research /Kinematic Calibration of a 2-DOF Parallel Orientation Manipulator: Theory and Simulation Results
MANIPULATION

Kinematic Calibration of a 2-DOF Parallel Orientation Manipulator: Theory and Simulation Results

Andrea Gabrielli, Alberto Borboni, Luca Carbonari, Matteo-Claudio Palpacelli

Year
2016
Citations
2

Abstract

The objective of this work is the calibration analysis of a 2-DOF orientation manipulator, conceived for micro-orientation tasks inside a microassembly workcell. The proposed device is an overconstrained spherical five-bar mechanism, already widely studied in the scientific literature and known for being a simple but robust solution for the realization of robot wrists; its 5R parallel kinematics architecture allows a wide orientation workspace and good accuracy performances. The present paper sets the theoretical bases for the “geometrical calibration” of the PKM (Parallel Kinematics Machine) and discusses the first simulation results: the meaning of “geometrical calibration” is intended as the identification of the construction and assembly errors that affect the manipulator static accuracy.

Keywords

WorkspaceWorkcellKinematicsParallel manipulatorOrientation (vector space)CalibrationComputer scienceSerial manipulatorStewart platformRealization (probability)

Related papers

Browse all MANIPULATION papers