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A new method to solve robot inverse kinematics using Assur virtual chains

Henrique Simas, Raul Guenther, D. F. M. da Cruz, Daniel Martins

Year
2009
Citations
19

Abstract

SUMMARY This paper describes a numerical algorithm to solve the inverse kinematics of parallel robots based on numerical integration. Inverse kinematics algorithms based on numerical integration involve the drift phenomena of the solution; as a consequence, errors are generated when the end-effector location differs from that desired. The proposed algorithm associates a novel method to describe the differential kinematics with a simple numerical integration method. The methodology is presented in this paper and its exponential stability is proved. A numerical example and a real application are presented to outline its advantages.

Keywords

Inverse kinematicsKinematicsNumerical integrationInverseComputer scienceRobot kinematicsNumerical analysisNumerical stabilityForward kinematicsStability (learning theory)

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