Home /Research /Kinematics, Dynamics and Control Design for a 4-DOF Robotic Manipulator
MANIPULATION

Kinematics, Dynamics and Control Design for a 4-DOF Robotic Manipulator

Thien-Quang Nguyen, Van-Truong Phan, Duy-Thien Vo, Van-Hoang Trinh, Hoang-Viet Nguyen, Manh-Son Tran, Duc Thien Tran

Year
2021
Citations
14

Abstract

This paper presents the problems of kinematics, dynamics, and design of the precise position controller for a 4-DOF robotic manipulator. First, the forward kinematic and the inverse kinematic are addressed based on the convention of Denavit - Hartenberg (DH) theory. Second, the dynamics are analyzed by the general Euler-Lagrange equation and the formula of the Coriolis/ Centrifuge matrix. Third, the two control laws of precisely the end-effector position proposed as PD - computed torque controller (PD-CTC) and sliding mode controller (SMC). Finally, a numerical simulation will be provided to verify the superiority of the proposed controllers for the robotic manipulator.

Keywords

KinematicsControl theory (sociology)Kinematics equationsInverse kinematicsPosition (finance)Computer scienceController (irrigation)Inverse dynamicsTorqueControl engineering

Related papers

Browse all MANIPULATION papers