DocumentCode
2082249
Title
Failure recoverability by exploiting kinematic redundancy
Author
Park, Jonghoon ; Chung, Wan-Kyun ; Youm, Youngil
Author_Institution
Dept. of Mech. Eng., Pohang Inst. of Sci. & Technol., South Korea
fYear
1996
fDate
11-14 Nov 1996
Firstpage
298
Lastpage
305
Abstract
Various physical limitations which exist in the manipulator inverse kinematic system, for example joint travel and velocity limits, induce inevitable motion errors. This paper deals with the problem on how to reconstruct such an inverse kinematic solution using redundancy, in order not to entail any task motion error. By analyzing the error due to hardware limitations with respect to the kinematically decoupled coordinates, we show that the recoverability limitation reduces to the solvability of a reconstruction equation under the feasibility condition. Next it is shown that the reconstruction equation is solvable if the configuration is not a joint-limit singularity. The reconstruction method is proposed based on the geometrical analysis of the recoverability of hardware limitations. The method has the feature that no task motion error is induced by the hardware limitations while minimizing a possible null motion error, under the recoverability assumed
Keywords
error analysis; failure analysis; geometry; manipulator kinematics; redundancy; error analysis; failure recoverability; geometric analysis; hardware limitations; inverse kinematics; joint-limit singularity; kinematic redundancy; manipulator; null motion error; solvability; task motion error; Conferences; Equations; Error analysis; Hardware; Jacobian matrices; Manipulators; Mechanical engineering; Reconstruction algorithms; Redundancy; Robot kinematics;
fLanguage
English
Publisher
ieee
Conference_Titel
Robot and Human Communication, 1996., 5th IEEE International Workshop on
Conference_Location
Tsukuba
Print_ISBN
0-7803-3253-9
Type
conf
DOI
10.1109/ROMAN.1996.568853
Filename
568853
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