Neutrosophic bipolar fuzzy decision-based approach for developing sustainable circular business model innovation tools

The circular economy (CE) has been identified as a possible catalyst for sustainable development by business, academics, and policymakers. To aid company developers in creating and improving business models that incorporate circularity, a variety of tools for circular business model innovation (CBMI...

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محفوظ في:
التفاصيل البيبلوغرافية
المؤلف الرئيسي: Alaa Zaidan, Aws (author)
مؤلفون آخرون: Deveci, Muhammet (author), A. Alsattar, Hassan (author), Qahtan, Sarah (author), Shang, Wen-Long (author), Delen, Dursun (author), Mourad, Nahia (author), Khalid Mohammed, Zainab (author)
منشور في: 2024
الموضوعات:
الوصول للمادة أونلاين:https://bspace.buid.ac.ae/handle/1234/3079
https://doi.org/10.1016/j.cie.2024.109966.
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author Alaa Zaidan, Aws
author2 Deveci, Muhammet
A. Alsattar, Hassan
Qahtan, Sarah
Shang, Wen-Long
Delen, Dursun
Mourad, Nahia
Khalid Mohammed, Zainab
author2_role author
author
author
author
author
author
author
author_facet Alaa Zaidan, Aws
Deveci, Muhammet
A. Alsattar, Hassan
Qahtan, Sarah
Shang, Wen-Long
Delen, Dursun
Mourad, Nahia
Khalid Mohammed, Zainab
author_role author
dc.creator.none.fl_str_mv Alaa Zaidan, Aws
Deveci, Muhammet
A. Alsattar, Hassan
Qahtan, Sarah
Shang, Wen-Long
Delen, Dursun
Mourad, Nahia
Khalid Mohammed, Zainab
dc.date.none.fl_str_mv 2024-02-07
2025-05-21T16:13:58Z
2025-05-21T16:13:58Z
dc.identifier.none.fl_str_mv Zaidan, A.A. et al. (2024) “Neutrosophic bipolar fuzzy decision-based approach for developing sustainable circular business model innovation tools,” Computers & Industrial Engineering, 189.
0360-8352
https://bspace.buid.ac.ae/handle/1234/3079
https://doi.org/10.1016/j.cie.2024.109966.
dc.language.none.fl_str_mv en_US
dc.publisher.none.fl_str_mv Elsevier
dc.relation.none.fl_str_mv Computers & Industrial Engineeringv189 (202403)
dc.subject.none.fl_str_mv Circular business model innovation CODAS FWZIC MADM Neutrosophic bipolar fuzzy sets
dc.title.none.fl_str_mv Neutrosophic bipolar fuzzy decision-based approach for developing sustainable circular business model innovation tools
dc.type.none.fl_str_mv Article
description The circular economy (CE) has been identified as a possible catalyst for sustainable development by business, academics, and policymakers. To aid company developers in creating and improving business models that incorporate circularity, a variety of tools for circular business model innovation (CBMI) have been proposed. Nevertheless, the existing tools failed to consider sustainability or CE in their advancements. Currently, there is no research that has presented a complete dataset including all potential tools that may be created based on the CE’ sustainability performance attributes. Moreover, there has been a dearth of research conducted to assess and model these tools in order to determine the most efficient ones, which has resulted in a research gap. This paper constructs a decision matrix of CBMI tools by intersecting 100 CBMI tools with 10 CE’ sustainability performance attributes. The modeling of CBMI tools falls under Multiple Attribute Decision Making (MADM) due to the presence of many attributes, varying importance levels of these attributes, and the and variation in data. Thus, the fuzzy weighted with zero inconsistency (FWZIC) method is reformulated under neutrosophic bipolar fuzzy sets (NBFS) to determine the weight of CE’s sustainability performance attributes. The matrix that has been constructed and the resulting weight values are fed into the CODAS method in order to model CBMI tools and identify the most sustainable tool. The results indicate that the NBFS-FWZIC method gave a weight value of 0.1031 to A7, which is the greatest weight value. On the other hand, A3 had the lowest weight value of 0.0944. The CODAS method modeled the 100 CBMI tools, with Tool39 being identified as the most sustainable tool and Tool26 as the least sustainable tool. The robustness and durability of the proposed method are evaluated using a sensitivity analysis, Spearman’s rank correlation test, and comparison analysis.
id budr_1f86e2b4078bd3fad9e83dd5f587c247
identifier_str_mv Zaidan, A.A. et al. (2024) “Neutrosophic bipolar fuzzy decision-based approach for developing sustainable circular business model innovation tools,” Computers & Industrial Engineering, 189.
0360-8352
language_invalid_str_mv en_US
network_acronym_str budr
network_name_str The British University in Dubai repository
oai_identifier_str oai:bspace.buid.ac.ae:1234/3079
publishDate 2024
publisher.none.fl_str_mv Elsevier
repository.mail.fl_str_mv
repository.name.fl_str_mv
repository_id_str
spelling Neutrosophic bipolar fuzzy decision-based approach for developing sustainable circular business model innovation toolsAlaa Zaidan, AwsDeveci, MuhammetA. Alsattar, HassanQahtan, SarahShang, Wen-LongDelen, DursunMourad, NahiaKhalid Mohammed, ZainabCircular business model innovation CODAS FWZIC MADM Neutrosophic bipolar fuzzy setsThe circular economy (CE) has been identified as a possible catalyst for sustainable development by business, academics, and policymakers. To aid company developers in creating and improving business models that incorporate circularity, a variety of tools for circular business model innovation (CBMI) have been proposed. Nevertheless, the existing tools failed to consider sustainability or CE in their advancements. Currently, there is no research that has presented a complete dataset including all potential tools that may be created based on the CE’ sustainability performance attributes. Moreover, there has been a dearth of research conducted to assess and model these tools in order to determine the most efficient ones, which has resulted in a research gap. This paper constructs a decision matrix of CBMI tools by intersecting 100 CBMI tools with 10 CE’ sustainability performance attributes. The modeling of CBMI tools falls under Multiple Attribute Decision Making (MADM) due to the presence of many attributes, varying importance levels of these attributes, and the and variation in data. Thus, the fuzzy weighted with zero inconsistency (FWZIC) method is reformulated under neutrosophic bipolar fuzzy sets (NBFS) to determine the weight of CE’s sustainability performance attributes. The matrix that has been constructed and the resulting weight values are fed into the CODAS method in order to model CBMI tools and identify the most sustainable tool. The results indicate that the NBFS-FWZIC method gave a weight value of 0.1031 to A7, which is the greatest weight value. On the other hand, A3 had the lowest weight value of 0.0944. The CODAS method modeled the 100 CBMI tools, with Tool39 being identified as the most sustainable tool and Tool26 as the least sustainable tool. The robustness and durability of the proposed method are evaluated using a sensitivity analysis, Spearman’s rank correlation test, and comparison analysis.Elsevier2025-05-21T16:13:58Z2025-05-21T16:13:58Z2024-02-07ArticleZaidan, A.A. et al. (2024) “Neutrosophic bipolar fuzzy decision-based approach for developing sustainable circular business model innovation tools,” Computers & Industrial Engineering, 189.0360-8352https://bspace.buid.ac.ae/handle/1234/3079https://doi.org/10.1016/j.cie.2024.109966.en_USComputers & Industrial Engineeringv189 (202403)oai:bspace.buid.ac.ae:1234/30792026-01-29T14:07:31Z
spellingShingle Neutrosophic bipolar fuzzy decision-based approach for developing sustainable circular business model innovation tools
Alaa Zaidan, Aws
Circular business model innovation CODAS FWZIC MADM Neutrosophic bipolar fuzzy sets
title Neutrosophic bipolar fuzzy decision-based approach for developing sustainable circular business model innovation tools
title_full Neutrosophic bipolar fuzzy decision-based approach for developing sustainable circular business model innovation tools
title_fullStr Neutrosophic bipolar fuzzy decision-based approach for developing sustainable circular business model innovation tools
title_full_unstemmed Neutrosophic bipolar fuzzy decision-based approach for developing sustainable circular business model innovation tools
title_short Neutrosophic bipolar fuzzy decision-based approach for developing sustainable circular business model innovation tools
title_sort Neutrosophic bipolar fuzzy decision-based approach for developing sustainable circular business model innovation tools
topic Circular business model innovation CODAS FWZIC MADM Neutrosophic bipolar fuzzy sets
url https://bspace.buid.ac.ae/handle/1234/3079
https://doi.org/10.1016/j.cie.2024.109966.