DocumentCode
489047
Title
Manipulator Design for Optimal Dynamic Motions Along Specified Paths
Author
Shiller, Zvi ; Sundar, Satish
Author_Institution
Mechanical, Aerospace and Nuclear Engineering, University of California Los Angeles, CA 90024
fYear
1991
fDate
26-28 June 1991
Firstpage
2033
Lastpage
2038
Abstract
Design methods of robotic manipulators for optimal motions along specified paths are presented. The design problem is formulated as a parameter optimization, using the optimal motion time along the given path as the cost function and the link lengths or the actuator sizes as the design parameters. Based on geometric insights into the shapes of time optimal paths, an approximate method is also presented that curve fits the acceleration lines to the specified path, avoiding the computationally expensive time optimization problem. The approximate method yields efficiently near optimal designs in a fraction of the computation time required for the exact solutions. Examples of the design of a fivebar mechanism are presented, demonstrating close correlation between the exact and the approximate solutions.
Keywords
Cost function; Design methodology; Jacobian matrices; Manipulator dynamics; Mesons; Robots; Shape; Sun; Tellurium;
fLanguage
English
Publisher
ieee
Conference_Titel
American Control Conference, 1991
Conference_Location
Boston, MA, USA
Print_ISBN
0-87942-565-2
Type
conf
Filename
4791754
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