| Literature DB >> 29986549 |
Ji Chen1, Shouzhen Zeng2, Chonghui Zhang3.
Abstract
This paper presents a technique based on the ordered weighted averaging (OWA) distance for the single-valued neutrosophic linguistic (SVNL) technique for order preference by similarity to an ideal solution (TOPSIS). First, the inadequacies of the existing SVNL TOPSIS are analyzed in detail. Second, a SVNL OWA distance (SVNLOWAD) measure is presented, and based on this, a modified TOPSIS, termed the SVNLOWAD-TOPSIS, is developed for multiple attribute decision-making problems with SVNL information. Third, a revised relative coefficient is proposed to rank potential alternatives. Finally, a numerical example concerning green supplier selection in low-carbon supply chains is introduced to demonstrate the effectiveness of the model.Entities:
Keywords: OWA operator; TOPSIS; green supplier selection; multiple attribute decision-making; single-valued neutrosophic linguistic set
Mesh:
Year: 2018 PMID: 29986549 PMCID: PMC6069397 DOI: 10.3390/ijerph15071439
Source DB: PubMed Journal: Int J Environ Res Public Health ISSN: 1660-4601 Impact factor: 3.390
Single-valued neutrosophic linguistic (SVNL) decision matrix .
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SVNL decision matrix .
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SVNL decision matrix .
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Standardized SVNL decision matrix .
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Standardized SVNL decision matrix .
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Standardized SVNL decision matrix .
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Collective SVNL decision matrix .
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Weighted collective SVNL decision matrix .
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Results obtained by the Ye’s method [34].
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| 32.527 | 3.754 | 0.103 | 3 |
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| 31.720 | 4.280 | 0.119 | 2 |
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| 33.722 | 2.278 | 0.063 | 4 |
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| 31.071 | 5.534 | 0.151 | 1 |
Closeness coefficients, , obtained under particular cases of the SVNLOWAD-TOPSIS approach.
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| −0.227 | −0.437 | −0.401 | −0.469 | −0.370 |
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| −0.196 | −0.051 | −0.247 | −0.155 | −0.456 |
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| −0.470 | −0.651 | −0.583 | −0.016 | −0.819 |
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| −0.039 | −0.008 | 0 | 0 | 0.030 |
Ordering of the alternatives based on particular cases of the SVNLOWAD-TOPSIS approach.
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| Step SVNLOWAD-TOPSIS ( |
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