A GIS-based interval type-2 fuzzy set for public bread factory site selection

Purpose The purpose of this paper is to present a new public bread factory location selection for Istanbul Metropolitan Municipality (IMM). Design/methodology/approach A two-stage methodology is proposed to determine the location for the public bread factory facility. This framework is based on both...

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Veröffentlicht in:Journal of enterprise information management 2018-10, Vol.31 (6), p.820-847
Hauptverfasser: Deveci, Muhammet, Akyurt, Ibrahim Zeki, Yavuz, Selahattin
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Sprache:eng
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Zusammenfassung:Purpose The purpose of this paper is to present a new public bread factory location selection for Istanbul Metropolitan Municipality (IMM). Design/methodology/approach A two-stage methodology is proposed to determine the location for the public bread factory facility. This framework is based on both geographic information systems (GIS) and multi-criteria decision-making (MCDM) techniques. The first stage of the methodology aims to decrease the number of possible alternative locations to simplify the selection activity by applying GIS; the second stage utilises interval type-2 fuzzy MCDM approach to exactly determine the public bread factory site location. Findings In this study, the authors present weighted normalised-based interval type-2 hesitant fuzzy and interval type-2 hesitant fuzzy sets (IT2HFSs)-based compressed proportional assessment (COPRAS) methods to overcome facility location selection problem for a fourth public bread factory in Istanbul. Practical implications The results show that the proposed approach is practical and can be employed by the bakery industry. Originality/value In this study, the authors present a two-stage methodology for public bread factory site selection. In the first stage, the number of alternatives is reduced by the GIS. In the second stage, an interval type-2 fuzzy set is implemented for the evaluation of public bakery factory site alternatives. A new integrated approach based on COPRAS method and weighted normalised with IT2HFSs is proposed.
ISSN:1741-0398
1758-7409
DOI:10.1108/JEIM-02-2018-0029