Home /Research /Inverse Kinematics Analysis of 7-DOF Anthropomorphic Robot Arm using Conformal Geometric Algebra
OTHER

Inverse Kinematics Analysis of 7-DOF Anthropomorphic Robot Arm using Conformal Geometric Algebra

Je-Seok Kim, Yong-Kwan Ji, Jahng Hyon Park

Year
2012
Citations
2

Abstract

In this paper, we present an inverse kinematics of a 7-dof Anthropomorphic robot arm using conformal geometric algebra. The inverse kinematics of a 7-dof Anthropomorphic robot arm using CGA can be computed in an easy way. The geometrically intuitive operations of CGA make it easy to compute the joint angles of a 7-dof Anthropomorphic robot arm which need to be set in order for the robot to reach its goal or the positions of a redundant robot arm’s end-effector. In order to choose the best solution of the elbow position at an inverse kinematics, optimization techniques have been proposed to minimize an objective function while satisfying the eulerlagrange equation.

Keywords

Inverse kinematicsKinematicsRobot kinematicsConformal geometric algebraRobotic armConformal mapRobot end effectorKinematics equationsComputer scienceRobot

Related papers

Browse all OTHER papers