2019•Unpublished venueRequires access

Motion simulation of Delta parallel robot based on Solidworks and Simulink

Cheng LIU, Guohua Cao, Yongyin Qu

Open publisher page 5 citations

Abstract

In this paper, the kinematics principle of three-degree-of-freedom Delta high-speed parallel manipulator is analyzed. Based on Solidworks and Simulink/Sim Mechanics as simulation development platform, a modeling method of transforming three-dimensional model into SimMechanics model is proposed. SimMechanics model is established and simulated. The results show that this method can visually simulate and analyze the motion of Delta parallel robot, and provide reference for the selection and optimization of parallel robot mechanism and the design of controller.

About this research paper

What this paper is about

In this paper, the kinematics principle of three-degree-of-freedom Delta high-speed parallel manipulator is analyzed. Based on Solidworks and Simulink/Sim Mechanics as simulation development platform, a modeling method of transforming three-dimensional model into SimMechanics model is proposed. SimMechanics model is established and simulated. The results show that this method can visually simulate and analyze the motion of Delta parallel robot, and provide reference for the selection and optimization of parallel robot mechanism and the design of controller.

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OpenAlex reports 5 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

In this paper, the kinematics principle of three-degree-of-freedom Delta high-speed parallel manipulator is analyzed. Based on Solidworks and Simulink/Sim Mechanics as simulation development platform, a modeling method of transforming three-dimensional model into SimMechanics model is proposed. SimMechanics model is established and simulated. The results show that this method can visually simulate and analyze the motion of Delta parallel robot, and provide reference for the selection and optimization of parallel robot mechanism and the design of controller.

Key concepts: Parallel manipulator, Kinematics, Computer science, Mechanism (biology), Simulation, Motion (physics), Motion control, Robot

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