Abstract
Selecting relevant features to make a decision and expressing the relationships between these features is not a simple task. The decision maker must precisely define the alternatives and criteria which are more important for the decision making process. The Analytic Hierarchy Process (AHP) uses hierarchical structures to facilitate this process. The comparison is realized using pairwise matrices, which are filled in according to the decision maker judgments. Subsequently, matrix consistency is tested and priorities are obtained by calculating the matrix principal eigenvector. Given an incomplete pairwise matrix, two procedures must be performed: first, it must be completed with suitable values for the missing entries and, second, the matrix must be improved until a satisfactory level of consistency is reached. Several methods are used to fill in missing entries for incomplete pairwise matrices with correct comparison values. Additionally, once pairwise matrices are complete and if comparison judgments between pairs are not consistent, some methods must be used to improve the matrix consistency and, therefore, to obtain coherent results. In this paper a model based on the Multi-Layer Perceptron (MLP) neural network is presented. Given an AHP pairwise matrix, this model is capable of completing missing values and improving the matrix consistency at the same time. © 2010 Elsevier Inc. All rights reserved.
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Elsevier
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Applied mathematics , Arquitetura, urbanismo e design , Astronomia / física , Biodiversidade , Ciência da computação , Ciências agrárias i , Ciências ambientais , Ciências biológicas ii , Ciências biológicas iii , Computational mathematics , Computer science (all) , Engenharias i , Engenharias ii , Engenharias iii , Engenharias iv , Ensino , Filosofia/teologia:subcomissão filosofia , Geociências , Interdisciplinar , Matemática / probabilidade e estatística , Materiais , Mathematics, applied , Medicina ii , Medicina iii , Nutrição , Química , Saúde coletiva
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Gomez-Ruiz J; Karanik M; Peláez J (2010). Estimation of missing judgments in AHP pairwise matrices using a neural network-based model. Applied Mathematics And Computation, 216(10), 2959-2975. DOI: 10.1016/j.amc.2010.04.009
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