Neutrosophic Hybrid MCDM Framework to Evaluate the Risks of Excavation System
The building of excavations is an extremely dangerous job that incorporates a variety of different variables. It is possible to significantly lower the likelihood of an accident occurring by first accurately identifying high-risk variables and then taking appropriate preventative steps. Single-value...
Main Authors: | , |
---|---|
Format: | Article |
Language: | English |
Published: |
University of New Mexico
2023-05-01
|
Series: | Neutrosophic Sets and Systems |
Subjects: | |
Online Access: | http://fs.unm.edu/NSS/NeutrosophicExcavationSystem10.pdf |
_version_ | 1827945935197437952 |
---|---|
author | Ahmed Abdel-Monem Ahmed Abdelhafeez |
author_facet | Ahmed Abdel-Monem Ahmed Abdelhafeez |
author_sort | Ahmed Abdel-Monem |
collection | DOAJ |
description | The building of excavations is an extremely dangerous job that incorporates a variety of different variables. It is possible to significantly lower the likelihood of an accident occurring by first accurately identifying high-risk variables and then taking appropriate preventative steps. Single-valued neutrosophic verbal sets (SVNVS) can effectively represent qualitative and vague information when used in the identification process for high-risk variables of excavation systems. In addition, the identification of high risk elements associated with an excavation system is a multi-criteria decision-making (MCDM) issue. This issue may be resolved by using the multi-attribute border approximation area comparison (MABAC) technique. The MABAC method operates on the presumption that criteria are compensating. However, the identification process for high-risk variables of excavation systems may include characteristics that are not compensatory. Under conditions of single-valued neutrosophic sets, a MABAC approach is developed. The weights of the criterion are calculated using this approach, which uses the mean-squared deviation weight method. In addition to that, an illustrated example is carried out to demonstrate the process that is involved in the MABAC approach. |
first_indexed | 2024-03-13T10:51:33Z |
format | Article |
id | doaj.art-bcfacb773b154aaa98736fa1cb174c0b |
institution | Directory Open Access Journal |
issn | 2331-6055 2331-608X |
language | English |
last_indexed | 2024-03-13T10:51:33Z |
publishDate | 2023-05-01 |
publisher | University of New Mexico |
record_format | Article |
series | Neutrosophic Sets and Systems |
spelling | doaj.art-bcfacb773b154aaa98736fa1cb174c0b2023-05-17T13:29:07ZengUniversity of New MexicoNeutrosophic Sets and Systems2331-60552331-608X2023-05-015517318610.5281/zenodo.7832733Neutrosophic Hybrid MCDM Framework to Evaluate the Risks of Excavation SystemAhmed Abdel-MonemAhmed AbdelhafeezThe building of excavations is an extremely dangerous job that incorporates a variety of different variables. It is possible to significantly lower the likelihood of an accident occurring by first accurately identifying high-risk variables and then taking appropriate preventative steps. Single-valued neutrosophic verbal sets (SVNVS) can effectively represent qualitative and vague information when used in the identification process for high-risk variables of excavation systems. In addition, the identification of high risk elements associated with an excavation system is a multi-criteria decision-making (MCDM) issue. This issue may be resolved by using the multi-attribute border approximation area comparison (MABAC) technique. The MABAC method operates on the presumption that criteria are compensating. However, the identification process for high-risk variables of excavation systems may include characteristics that are not compensatory. Under conditions of single-valued neutrosophic sets, a MABAC approach is developed. The weights of the criterion are calculated using this approach, which uses the mean-squared deviation weight method. In addition to that, an illustrated example is carried out to demonstrate the process that is involved in the MABAC approach. http://fs.unm.edu/NSS/NeutrosophicExcavationSystem10.pdfneutrosophic setsmean squared deviation weightexcavation system |
spellingShingle | Ahmed Abdel-Monem Ahmed Abdelhafeez Neutrosophic Hybrid MCDM Framework to Evaluate the Risks of Excavation System Neutrosophic Sets and Systems neutrosophic sets mean squared deviation weight excavation system |
title | Neutrosophic Hybrid MCDM Framework to Evaluate the Risks of Excavation System |
title_full | Neutrosophic Hybrid MCDM Framework to Evaluate the Risks of Excavation System |
title_fullStr | Neutrosophic Hybrid MCDM Framework to Evaluate the Risks of Excavation System |
title_full_unstemmed | Neutrosophic Hybrid MCDM Framework to Evaluate the Risks of Excavation System |
title_short | Neutrosophic Hybrid MCDM Framework to Evaluate the Risks of Excavation System |
title_sort | neutrosophic hybrid mcdm framework to evaluate the risks of excavation system |
topic | neutrosophic sets mean squared deviation weight excavation system |
url | http://fs.unm.edu/NSS/NeutrosophicExcavationSystem10.pdf |
work_keys_str_mv | AT ahmedabdelmonem neutrosophichybridmcdmframeworktoevaluatetherisksofexcavationsystem AT ahmedabdelhafeez neutrosophichybridmcdmframeworktoevaluatetherisksofexcavationsystem |