Consistency and consensus-driven models to personalize individual semantics of linguistic terms for supporting group decision making with distribution linguistic preference relations
Distribution linguistic preference relations (DLPRs) that model linguistic expressions with the aid of probabilistic distributions of multiple linguistic terms provide an effective tool to accurately elicit the preferences of decision makers (DMs) in linguistic decisions. Meanwhile, numerical scale...
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Published in | Knowledge-based systems Vol. 189; p. 105078 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
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Amsterdam
Elsevier B.V
15.02.2020
Elsevier Science Ltd |
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Abstract | Distribution linguistic preference relations (DLPRs) that model linguistic expressions with the aid of probabilistic distributions of multiple linguistic terms provide an effective tool to accurately elicit the preferences of decision makers (DMs) in linguistic decisions. Meanwhile, numerical scale models have been suitable choices for DMs to handle computing with words when solving linguistic decision problems. This study focuses on improving the group decision making (GDM) with DLPRs via the help of numerical scale models by filling the following gap. It is obvious that words might exhibit different meanings for different people. DMs may have a varying understanding of a given linguistic term in real-world fuzzy linguistic GDM. Setting personalized semantics of the linguistic terms for each DM becomes a critical task in GDM with DLPRs. To do this, we first define an improved numerical scale model to facilitate the linkages between DLPRs and numerical fuzzy preference relations. Then an additive consistency and a multiplicative consistency of DLPRs are analyzed, and the corresponding consistency indices are provided to measure the consistency levels of DLPRs. Based on them, we develop two consistency-driven optimization models to personalize numerical scales for linguistic terms with individual DLPRs. Next, we develop an approach for addressing GDM with DLPRs. In the proposed approach, a dissimilarity-based consensus measure is designed. To determine a group numerical scale for the linguistic terms with the corresponding group DLPR, two consistency and consensus-driven optimization models are constructed. Finally, illustrative examples are analyzed using the proposed approach to demonstrate its applicability and validity.
•Transformations between DLPRs and fuzzy preference relations are studied.•The consistency of DLPRs is constructed and analyzed.•Two consistency-driven optimization models are built to personalize numerical scales.•Two two-objective optimization models are built to determine group numerical scales.•A GDM approach with DLPRs is proposed and applied to two practical GDM problems. |
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AbstractList | Distribution linguistic preference relations (DLPRs) that model linguistic expressions with the aid of probabilistic distributions of multiple linguistic terms provide an effective tool to accurately elicit the preferences of decision makers (DMs) in linguistic decisions. Meanwhile, numerical scale models have been suitable choices for DMs to handle computing with words when solving linguistic decision problems. This study focuses on improving the group decision making (GDM) with DLPRs via the help of numerical scale models by filling the following gap. It is obvious that words might exhibit different meanings for different people. DMs may have a varying understanding of a given linguistic term in real-world fuzzy linguistic GDM. Setting personalized semantics of the linguistic terms for each DM becomes a critical task in GDM with DLPRs. To do this, we first define an improved numerical scale model to facilitate the linkages between DLPRs and numerical fuzzy preference relations. Then an additive consistency and a multiplicative consistency of DLPRs are analyzed, and the corresponding consistency indices are provided to measure the consistency levels of DLPRs. Based on them, we develop two consistency-driven optimization models to personalize numerical scales for linguistic terms with individual DLPRs. Next, we develop an approach for addressing GDM with DLPRs. In the proposed approach, a dissimilarity-based consensus measure is designed. To determine a group numerical scale for the linguistic terms with the corresponding group DLPR, two consistency and consensus-driven optimization models are constructed. Finally, illustrative examples are analyzed using the proposed approach to demonstrate its applicability and validity. Distribution linguistic preference relations (DLPRs) that model linguistic expressions with the aid of probabilistic distributions of multiple linguistic terms provide an effective tool to accurately elicit the preferences of decision makers (DMs) in linguistic decisions. Meanwhile, numerical scale models have been suitable choices for DMs to handle computing with words when solving linguistic decision problems. This study focuses on improving the group decision making (GDM) with DLPRs via the help of numerical scale models by filling the following gap. It is obvious that words might exhibit different meanings for different people. DMs may have a varying understanding of a given linguistic term in real-world fuzzy linguistic GDM. Setting personalized semantics of the linguistic terms for each DM becomes a critical task in GDM with DLPRs. To do this, we first define an improved numerical scale model to facilitate the linkages between DLPRs and numerical fuzzy preference relations. Then an additive consistency and a multiplicative consistency of DLPRs are analyzed, and the corresponding consistency indices are provided to measure the consistency levels of DLPRs. Based on them, we develop two consistency-driven optimization models to personalize numerical scales for linguistic terms with individual DLPRs. Next, we develop an approach for addressing GDM with DLPRs. In the proposed approach, a dissimilarity-based consensus measure is designed. To determine a group numerical scale for the linguistic terms with the corresponding group DLPR, two consistency and consensus-driven optimization models are constructed. Finally, illustrative examples are analyzed using the proposed approach to demonstrate its applicability and validity. •Transformations between DLPRs and fuzzy preference relations are studied.•The consistency of DLPRs is constructed and analyzed.•Two consistency-driven optimization models are built to personalize numerical scales.•Two two-objective optimization models are built to determine group numerical scales.•A GDM approach with DLPRs is proposed and applied to two practical GDM problems. |
ArticleNumber | 105078 |
Author | Pedrycz, Witold Tang, Xiaoan Peng, Zhanglin Yang, Shanlin Zhang, Qiang |
Author_xml | – sequence: 1 givenname: Xiaoan surname: Tang fullname: Tang, Xiaoan email: sichuanshengxiaoan@163.com organization: School of Management, Hefei University of Technology, Hefei, Box 270, Hefei 230009, Anhui, PR China – sequence: 2 givenname: Zhanglin surname: Peng fullname: Peng, Zhanglin organization: School of Management, Hefei University of Technology, Hefei, Box 270, Hefei 230009, Anhui, PR China – sequence: 3 givenname: Qiang surname: Zhang fullname: Zhang, Qiang email: qiang_zhang@hfut.edu.cn organization: School of Management, Hefei University of Technology, Hefei, Box 270, Hefei 230009, Anhui, PR China – sequence: 4 givenname: Witold surname: Pedrycz fullname: Pedrycz, Witold organization: Department of Electrical & Computer Engineering, University of Alberta, Edmonton T6R 2V4, Canada – sequence: 5 givenname: Shanlin surname: Yang fullname: Yang, Shanlin organization: School of Management, Hefei University of Technology, Hefei, Box 270, Hefei 230009, Anhui, PR China |
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Keywords | Group decision making (GDM) Distribution linguistic preference relation (DLPR) Numerical scale model Personalized individual semantics Consensus measure |
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SubjectTerms | Consensus measure Consistency Decision making Distribution linguistic preference relation (DLPR) Group decision making (GDM) Linguistics Mathematical models Numerical scale model Optimization Personalized individual semantics Preferences Scale models Semantics Words (language) |
Title | Consistency and consensus-driven models to personalize individual semantics of linguistic terms for supporting group decision making with distribution linguistic preference relations |
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