2017Unpublished venueRequires access

Analytical inverse kinematic solution using the D-H method for a 6-DOF robot

Jun-Di Sun, Guang‐Zhong Cao, Wenbo Li, Yuxin Liang, Su‐Dan Huang

Open publisher page 47 citations

Abstract

This paper proposes an analytical approach to solve inverse kinematics of a 6-DOF robot. The robot discussed here is designed with 6R configuration. The D-H model of the six-axis robot is built. The forward analytical solution is deduced using the D-H method. Then, analysis of inverse kinematics for the robot is presented. And finally, the validity of the inverse kinematic equations is verified. Forward kinematic equations and inverse kinematic equations are suitable for all kinds of robots with configuration similar to those of the robot in this paper.

About this research paper

What this paper is about

This paper proposes an analytical approach to solve inverse kinematics of a 6-DOF robot. The robot discussed here is designed with 6R configuration. The D-H model of the six-axis robot is built. The forward analytical solution is deduced using the D-H method. Then, analysis of inverse kinematics for the robot is presented. And finally, the validity of the inverse kinematic equations is verified. Forward kinematic equations and inverse kinematic equations are suitable for all kinds of robots with configuration similar to those of the robot in this paper.

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OpenAlex reports 47 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

This paper proposes an analytical approach to solve inverse kinematics of a 6-DOF robot. The robot discussed here is designed with 6R configuration. The D-H model of the six-axis robot is built. The forward analytical solution is deduced using the D-H method. Then, analysis of inverse kinematics for the robot is presented. And finally, the validity of the inverse kinematic equations is verified. Forward kinematic equations and inverse kinematic equations are suitable for all kinds of robots with configuration similar to those of the robot in this paper.

Key concepts: Inverse kinematics, Kinematics, Robot kinematics, Kinematics equations, Robot, Robot calibration, Inverse, Forward kinematics

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