Forward kinematics solutions of a special six-degree-of-freedom parallel manipulator with three limbs
Author(s) -
Jianxun Fu,
Feng Gao,
Yang Pan,
Hui Du
Publication year - 2015
Publication title -
advances in mechanical engineering
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.318
H-Index - 40
eISSN - 1687-8140
pISSN - 1687-8132
DOI - 10.1177/1687814015582118
Subject(s) - kinematics , parallel manipulator , kinematics equations , forward kinematics , position (finance) , polynomial , control theory (sociology) , robot end effector , orientation (vector space) , degree (music) , mathematics , robot kinematics , computer science , inverse kinematics , robot , mathematical analysis , geometry , artificial intelligence , physics , classical mechanics , mobile robot , control (management) , acoustics , economics , finance
This article presents a special 6-degree-of freedom parallel manipulator, and the mechanical structure of this robot has been introduced; with this structure, the kinematic constrain equations are decoupled. Based on this character, the polynomial solutions of the forward kinematics problem are also presented. In this method, the closed-loop kinematic chain of the manipulator is divided into two parts, the solution forward position kinematics is obtained by a first-degree polynomial equation first, and then an eighth-degree polynomial equation in a single variable for the forward orientation kinematics is obtained. Based on those solutions, the configurations of the robot, including position and orientation of the end-effector, are graphically displayed. A numerical simulation is given to verify the algorithm, and the result implies that for a given set of input values, the manipulator can be assembled in eight different configurations at most. And a set of experiments illustrate the motion ability for forward kinematics of the prototype of this manipulator
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