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...

Full description

Bibliographic Details
Main Authors: Ahmed Abdel-Monem, Ahmed Abdelhafeez
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