DocumentCode :
117192
Title :
Extracting three-dimensional Cellular Automaton for cement microstructure development using Gene Expression Programming
Author :
Zhifeng Liang ; Bo Yang ; Lin Wang ; Xiaoqian Zhang ; Nana He ; Abraham, Ajith
Author_Institution :
Shandong Provincial Key Lab. of Network based Intell. Comput., Univ. of Jinan, Jinan, China
fYear :
2014
fDate :
July 30 2014-Aug. 1 2014
Firstpage :
41
Lastpage :
46
Abstract :
A three-dimensional CA model for the simulation of Portland cement microstructure development has been developed in this paper. The Gene Expression Programming (GEP) algorithm is employed as the learning algorithm to evolve the transition rule reversely from the microstructure development characteristic data due to hydration reactions. The characteristic data is extracted from 8-bit gray images that based on the processing of real cement acquired by Micro Computed Tomography (micro-CT) technology. Starting with initial micro-CT image, cement microstructure evolution images of 28 days is constructed through CA rule discovered by GEP. The experimental results show that this model with the CA rule designed by GEP has higher agreement between the model predictions and experimental measurements for degree of hydration than other models. Furthermore, this model still has good generalization ability when changing the water-cement ratio and chemical composition.
Keywords :
cellular automata; cements (building materials); computerised tomography; feature extraction; genetic algorithms; learning (artificial intelligence); materials science computing; solvation; CA rule; GEP algorithm; Portland cement microstructure development; chemical composition; gene expression programming; gray image extraction; hydration reactions; learning algorithm; micro computed tomography; micro-CT technology; three-dimensional CA model; three-dimensional cellular automaton; transition rule; water-cement ratio; Computational modeling; Equations; Mathematical model; Prediction algorithms; Predictive models; Programming; TV; cement; gene expression programming; microstructure development; reverse modeling; three-dimensional cellular automaton;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Nature and Biologically Inspired Computing (NaBIC), 2014 Sixth World Congress on
Conference_Location :
Porto
Print_ISBN :
978-1-4799-5936-5
Type :
conf
DOI :
10.1109/NaBIC.2014.6921851
Filename :
6921851
Link To Document :
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