An assessed framework for manufacturing sustainability based on Industry 4.0 under uncertainty
Globalization and the rapid growth of technologies are the main challenges facing the manufacturer and its sustainability and survival. Sustainability for any manufacturing plays an important role in competitive advantage which make the manufacturing firm a sustainable competitor. Sustainability in...
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Format: | Article |
Language: | English |
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University of New Mexico
2022-04-01
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Series: | Neutrosophic Sets and Systems |
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Online Access: | http://fs.unm.edu/NSS/ManufacturingSustainability35.pdf |
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author | Khalid A. Eldrandaly Mona Mohamed Nissreen El-Saber Mohamed Abdel-Basset |
author_facet | Khalid A. Eldrandaly Mona Mohamed Nissreen El-Saber Mohamed Abdel-Basset |
author_sort | Khalid A. Eldrandaly |
collection | DOAJ |
description | Globalization and the rapid growth of technologies are the main challenges facing the manufacturer and its sustainability and survival. Sustainability for any manufacturing plays an important role in competitive advantage which make the manufacturing firm a sustainable competitor. Sustainability in manufacturing is integrated with Industry 4.0 (I4.0) to achieve benefits of economic, environmental, and social. But it has many criteria and factors and contains incomplete and uncertain information. So, we used the neutrosophic sets to overcome this incomplete information and treat with uncertainty environment. The Single-Valued Neutrosophic Set (SVNS) is used to evaluate these criteria, which include three values (Truth, indeterminacy, and falsity). The SVNS is integrated with Multi-Criteria Decision Making (MCDM) methods. The MCDM concept is used in this paper to deal with many conflicting criteria. A Decision-making trial and evaluation laboratory (DEMATEL) is utilized for determining the relation between five main criteria and fourteen sub-criteria in this study. Analytic Hierarchy Process (AHP) is used to compute the weights of the main and sub-criteria. Our framework is applied to a real case study in Egypt to show the validity of our framework. |
first_indexed | 2024-04-11T19:19:40Z |
format | Article |
id | doaj.art-29a678c70d684bbba4fa87dc9a89fc73 |
institution | Directory Open Access Journal |
issn | 2331-6055 2331-608X |
language | English |
last_indexed | 2024-04-11T19:19:40Z |
publishDate | 2022-04-01 |
publisher | University of New Mexico |
record_format | Article |
series | Neutrosophic Sets and Systems |
spelling | doaj.art-29a678c70d684bbba4fa87dc9a89fc732022-12-22T04:07:20ZengUniversity of New MexicoNeutrosophic Sets and Systems2331-60552331-608X2022-04-014956157810.5281/zenodo.6466518An assessed framework for manufacturing sustainability based on Industry 4.0 under uncertaintyKhalid A. EldrandalyMona MohamedNissreen El-SaberMohamed Abdel-BassetGlobalization and the rapid growth of technologies are the main challenges facing the manufacturer and its sustainability and survival. Sustainability for any manufacturing plays an important role in competitive advantage which make the manufacturing firm a sustainable competitor. Sustainability in manufacturing is integrated with Industry 4.0 (I4.0) to achieve benefits of economic, environmental, and social. But it has many criteria and factors and contains incomplete and uncertain information. So, we used the neutrosophic sets to overcome this incomplete information and treat with uncertainty environment. The Single-Valued Neutrosophic Set (SVNS) is used to evaluate these criteria, which include three values (Truth, indeterminacy, and falsity). The SVNS is integrated with Multi-Criteria Decision Making (MCDM) methods. The MCDM concept is used in this paper to deal with many conflicting criteria. A Decision-making trial and evaluation laboratory (DEMATEL) is utilized for determining the relation between five main criteria and fourteen sub-criteria in this study. Analytic Hierarchy Process (AHP) is used to compute the weights of the main and sub-criteria. Our framework is applied to a real case study in Egypt to show the validity of our framework.http://fs.unm.edu/NSS/ManufacturingSustainability35.pdfsustainabilityindustry 4.0; ahpsingle-valued neutrosophic setssvnssmulticriteria decision makingmcdmdematel |
spellingShingle | Khalid A. Eldrandaly Mona Mohamed Nissreen El-Saber Mohamed Abdel-Basset An assessed framework for manufacturing sustainability based on Industry 4.0 under uncertainty Neutrosophic Sets and Systems sustainability industry 4.0; ahp single-valued neutrosophic sets svnss multicriteria decision making mcdm dematel |
title | An assessed framework for manufacturing sustainability based on Industry 4.0 under uncertainty |
title_full | An assessed framework for manufacturing sustainability based on Industry 4.0 under uncertainty |
title_fullStr | An assessed framework for manufacturing sustainability based on Industry 4.0 under uncertainty |
title_full_unstemmed | An assessed framework for manufacturing sustainability based on Industry 4.0 under uncertainty |
title_short | An assessed framework for manufacturing sustainability based on Industry 4.0 under uncertainty |
title_sort | assessed framework for manufacturing sustainability based on industry 4 0 under uncertainty |
topic | sustainability industry 4.0; ahp single-valued neutrosophic sets svnss multicriteria decision making mcdm dematel |
url | http://fs.unm.edu/NSS/ManufacturingSustainability35.pdf |
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