20212021 IEEE International Conference on Power Electronics, Computer Applications (ICPECA)Requires access

Kinematics Analysis and Trajectory Planning of Robot Based on MATLAB

Wei Shen

Open publisher page 2 citations

Abstract

Taking PUMA560 robot as the carrier, the mathematical model and connecting rod coordinate system of PUMA560 robot are established, and its kinematics equations are written in parallel. The forward and inverse kinematics solutions of PUMA560 robot are obtained by using the robot toolbox robotics toolbox module in MATLAB software. Finally, the robot trajectory simulation is completed, which lays the foundation for future research.

About this research paper

What this paper is about

Taking PUMA560 robot as the carrier, the mathematical model and connecting rod coordinate system of PUMA560 robot are established, and its kinematics equations are written in parallel. The forward and inverse kinematics solutions of PUMA560 robot are obtained by using the robot toolbox robotics toolbox module in MATLAB software. Finally, the robot trajectory simulation is completed, which lays the foundation for future research.

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OpenAlex reports 2 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Taking PUMA560 robot as the carrier, the mathematical model and connecting rod coordinate system of PUMA560 robot are established, and its kinematics equations are written in parallel. The forward and inverse kinematics solutions of PUMA560 robot are obtained by using the robot toolbox robotics toolbox module in MATLAB software. Finally, the robot trajectory simulation is completed, which lays the foundation for future research.

Key concepts: Inverse kinematics, Robot kinematics, Kinematics, MATLAB, Robot, Toolbox, Forward kinematics, Trajectory

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