DocumentCode
2098464
Title
Optimal design of 6 DOF parallel manipulators using three point coordinates
Author
Kim, Sung-Gaun ; Ryu, Jeha
Author_Institution
Dept. of Mechatronics, Kwangju Inst. of Sci. & Technol., South Korea
Volume
4
fYear
2001
fDate
2001
Firstpage
2178
Abstract
Development of optimal design methods for general 6 degree-of-freedom parallel manipulators is important in obtaining an optimal architecture or pose for the best kinematic performance. Use of a performance index such as the condition number of the Jacobian matrix that is composed of nonhomogeneous physical units may lack physical significance. In order to avoid unit mismatch in the Jacobian matrix, the paper presents a new Jacobian formulation by use of three point generalized coordinates, which results in a (9×9) dimensionally homogeneous Jacobian matrix. The condition number of the new Jacobian matrix is used to design an optimal architecture or pose of parallel manipulators for best dexterity. A design example with a Gough-Stewart platform parallel manipulator by using the proposed formulation is shown to generate the same optimal configuration as from using the other Jacobian formulation methods
Keywords
Jacobian matrices; manipulators; 6 DOF parallel manipulators; Gough-Stewart platform; Jacobian matrix; dexterity; optimal architecture; optimal design; performance index; Design methodology; Equations; Jacobian matrices; Manipulators; Mechanical variables control; Mechatronics; Performance analysis; Position measurement; Robot control; Robot kinematics;
fLanguage
English
Publisher
ieee
Conference_Titel
Intelligent Robots and Systems, 2001. Proceedings. 2001 IEEE/RSJ International Conference on
Conference_Location
Maui, HI
Print_ISBN
0-7803-6612-3
Type
conf
DOI
10.1109/IROS.2001.976393
Filename
976393
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