Neutrosophic Hesitant Fuzzy Techniques and its Application to Structural Design

Structural optimization in construction has attracted significant attention to sustainable development. In reality, structural model is associated with different imprecise parameters. Several factors influence the uncertain framework for optimization structural models. To tackle such structural diff...

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Main Authors: Sanjoy Biswas, Samir Dey
Format: Article
Language:English
Published: University of New Mexico 2023-09-01
Series:Neutrosophic Sets and Systems
Subjects:
Online Access:https://fs.unm.edu/NSS/NeutrosophicHesitantFuzzy5.pdf
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author Sanjoy Biswas
Samir Dey
author_facet Sanjoy Biswas
Samir Dey
author_sort Sanjoy Biswas
collection DOAJ
description Structural optimization in construction has attracted significant attention to sustainable development. In reality, structural model is associated with different imprecise parameters. Several factors influence the uncertain framework for optimization structural models. To tackle such structural difficulties, an effective design and optimization configuration is required. In this proposed work, we have created a solution procedure to solve multi objective problems under neutrosophic-hesitant fuzzy (NHF) environment in context of structural design. The suggested procedure is based on the NHF decision-making set that assigns a set of potential values for each objective function’s membership, non-membership, and indeterminacy degrees in a NHF environment. The efficiency, applicability, and utility of the proposed technique are presented here by using a three-bar truss design model.
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spelling doaj.art-795da44f9ed2499bb29c28fc847ebe012023-10-14T09:51:36ZengUniversity of New MexicoNeutrosophic Sets and Systems2331-60552331-608X2023-09-01577611310.5281/zenodo.8271331Neutrosophic Hesitant Fuzzy Techniques and its Application to Structural DesignSanjoy BiswasSamir DeyStructural optimization in construction has attracted significant attention to sustainable development. In reality, structural model is associated with different imprecise parameters. Several factors influence the uncertain framework for optimization structural models. To tackle such structural difficulties, an effective design and optimization configuration is required. In this proposed work, we have created a solution procedure to solve multi objective problems under neutrosophic-hesitant fuzzy (NHF) environment in context of structural design. The suggested procedure is based on the NHF decision-making set that assigns a set of potential values for each objective function’s membership, non-membership, and indeterminacy degrees in a NHF environment. The efficiency, applicability, and utility of the proposed technique are presented here by using a three-bar truss design model. https://fs.unm.edu/NSS/NeutrosophicHesitantFuzzy5.pdfmulti objective structural problemhesitant fuzzy optimizationneutrosophic-hesitant fuzzy optimizationpareto optimal solution
spellingShingle Sanjoy Biswas
Samir Dey
Neutrosophic Hesitant Fuzzy Techniques and its Application to Structural Design
Neutrosophic Sets and Systems
multi objective structural problem
hesitant fuzzy optimization
neutrosophic-hesitant fuzzy optimization
pareto optimal solution
title Neutrosophic Hesitant Fuzzy Techniques and its Application to Structural Design
title_full Neutrosophic Hesitant Fuzzy Techniques and its Application to Structural Design
title_fullStr Neutrosophic Hesitant Fuzzy Techniques and its Application to Structural Design
title_full_unstemmed Neutrosophic Hesitant Fuzzy Techniques and its Application to Structural Design
title_short Neutrosophic Hesitant Fuzzy Techniques and its Application to Structural Design
title_sort neutrosophic hesitant fuzzy techniques and its application to structural design
topic multi objective structural problem
hesitant fuzzy optimization
neutrosophic-hesitant fuzzy optimization
pareto optimal solution
url https://fs.unm.edu/NSS/NeutrosophicHesitantFuzzy5.pdf
work_keys_str_mv AT sanjoybiswas neutrosophichesitantfuzzytechniquesanditsapplicationtostructuraldesign
AT samirdey neutrosophichesitantfuzzytechniquesanditsapplicationtostructuraldesign