2016
DOI: 10.1142/s021798491650144x
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Thermoluminescence curves simulation using genetic algorithm with factorial design

Abstract: The evolutionary approach is an effective optimization tool for numeric analysis of thermoluminescence (TL) processes to assess the microparameters of kinetic models and to determine its effects on the shape of TL peaks. In this paper, the procedure for tuning of genetic algorithm (GA) is presented. This approach is based on multifactorial experiment and allows choosing intrinsic mechanisms of evolutionary operators which provide the most efficient algorithm performance. The proposed method is tested by consid… Show more

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Cited by 3 publications
(1 citation statement)
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“…The success of an undertaking like this, establishes the employed model for the particular phenomena investigated. Different models for each phenomenon has been considerably used; one example is one trap one recombination center model (OTOR) that has been used to simulate many experimental behaviors [9,29,30,32] despite the fact that it is a hypothetical system that has not been replicated in natural materials. Simulation of a complete quartz luminescence system using a single model has not been achieved.…”
Section: Introductionmentioning
confidence: 99%
“…The success of an undertaking like this, establishes the employed model for the particular phenomena investigated. Different models for each phenomenon has been considerably used; one example is one trap one recombination center model (OTOR) that has been used to simulate many experimental behaviors [9,29,30,32] despite the fact that it is a hypothetical system that has not been replicated in natural materials. Simulation of a complete quartz luminescence system using a single model has not been achieved.…”
Section: Introductionmentioning
confidence: 99%