Title :
3D CMM strain-gauge triggering probe error characteristics modeling using fuzzy logic
Author :
S. Achiche;A. Wozniak;Z. Fan;M. Balazinski;L. Baron;T. Sorensen
Author_Institution :
Department of Management Engineering Technical University of Denmark Lyngby, Denmark
fDate :
5/1/2008 12:00:00 AM
Abstract :
The error values of CMMs depends on the probing direction; hence its spatial variation is a key part of the probe inaccuracy. This paper presents genetically-generated fuzzy knowledge bases (FKBs) to model the spatial error characteristics of a CMM module-changing probe. Two automatically generated FKBs based on two optimization paradigms are used for the reconstruction of the direction- dependent probe error w. The angles beta and gamma are used as input variables of the FKBs; they describe the spatial direction of probe triggering. The learning algorithm used to generate the FKBs is a real/ binary like coded genetic algorithm developed by the authors. The influence of the optimization criteria on the precision of the genetically-generated FKBs is presented.
Keywords :
"Coordinate measuring machines","Probes","Fuzzy logic","Transducers","Testing","Displacement measurement","Engineering management","Extraterrestrial measurements","Technology management","Mechanical engineering"
Conference_Titel :
Fuzzy Information Processing Society, 2008. NAFIPS 2008. Annual Meeting of the North American
Print_ISBN :
978-1-4244-2351-4
DOI :
10.1109/NAFIPS.2008.4531237