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Multi-Product Multi Echelon Measurements of Perishable Supply Chain: Fuzzy Non-Linear Programming Approach

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dc.rights.license CC BY eng
dc.contributor.author Ali, Sadia Samar cze
dc.contributor.author Barman, Haripriya cze
dc.contributor.author Kaur, Rajbir cze
dc.contributor.author Tomášková, Hana cze
dc.contributor.author Roy, Sankar Kumar cze
dc.date.accessioned 2026-07-21T06:39:42Z
dc.date.available 2026-07-21T06:39:42Z
dc.date.issued 2021 eng
dc.identifier.issn 2227-7390 eng
dc.identifier.uri http://hdl.handle.net/20.500.12603/2792
dc.description.abstract The perishable milk products industry has to deal with multiple pressures such as demand forecasting, price fluctuations, lead time, order batching, and inflated orders along with difficulties of climatic and traffic conditions, storage areas and shipment in unfavorable circumstances. The Indian dairy industry faces immense wattage issue due to improper infrastructure for the cold chain storage facilities, resulting in unsatisfied customers. A study is undertaken to comprehend the supply chain framework that handles perishability issues in production and distribution. Researchers propose a multi-objective mixed-integer non-linear supply chain coordination model under uncertain environments to minimize the cost of transportation, offset wastage of products and neutralize the losses due to insufficiencies of transit and storage amenities. The proposed model is meant for managing the delivery with lesser deterioration losses for producers, warehouses, and retailers. The model considers various costs for holding, halting, discounts on purchased cost, transportation cost for truckload policy under regular and unforeseen circumstances of curfew, and identify the rate of deterioration to know the impact on the cost for all players involved in the SCM framework. To handle uncertainty of objective functions, fuzzy set concepts and the defuzzification method are imposed, and fuzzy non-linear programming algorithms are used to get the single objective function from the defuzzified multi-objective functions. Data analysis is done on Lingo 18.0 software. Rate of deterioration is highest for the warehouse, which indicates that efforts should be made to augment warehouse facilities for less spoilage to reduce losses in cost. Finally, the study ends with main findings, conclusions, limitations and future scopes. eng
dc.format p. "Article Number: 2093" eng
dc.language.iso eng eng
dc.publisher MDPI eng
dc.relation.ispartof MATHEMATICS, volume 9, issue: 17 eng
dc.subject supply chain network eng
dc.subject inventory eng
dc.subject product's decay and deterioration eng
dc.subject fuzzy set eng
dc.subject non linear multi-objective optimization eng
dc.title Multi-Product Multi Echelon Measurements of Perishable Supply Chain: Fuzzy Non-Linear Programming Approach eng
dc.type article eng
dc.identifier.obd 43877944 eng
dc.identifier.wos 000694284400001 eng
dc.identifier.doi 10.3390/math9172093 eng
dc.publicationstatus postprint eng
dc.peerreviewed yes eng
dc.source.url https://www.mdpi.com/2227-7390/9/17/2093/htm cze
dc.relation.publisherversion https://www.mdpi.com/2227-7390/9/17/2093/htm eng
dc.rights.access Open Access eng


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