Neutrosophic Industry 5 0 Inventory Model With Technology Driven Demand And Costs Parameters


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Neutrosophic Industry 5.0 Inventory Model with Technology Driven Demand and Costs Parameters


Neutrosophic Industry 5.0 Inventory Model with Technology Driven Demand and Costs Parameters

Author: A. Theeba

language: en

Publisher: Infinite Study

Release Date: 2024-01-01


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In this age of technology, the manufacturing sectors are embracing the elements of industry 5.0 to setup a robust kind of production process. This research work proposes a novel neutrosophic production inventory model encompassing the cost parameters of technology inaddition to the conventional inventory costs. In this model the demand is expressed as function of technology of the form š›¼š‘’āˆ’š›½š‘” + š›¾š‘” with the coefficients α, β and š›¾dealing with the initial demand, decrease in demand over time and increase in demand with the adoption of new technology. The neutrosophic model developed in this work addresses the decision circumstances of indeterminacy in addition to uncertainty. The primary objective of this paper is to introduce the notion of technology driven demand and new types of costs associated with technology in a neutrosophic modelling environment. The proposed neutrosophic model is simulated and sensitively analyzed to draw inferences of the parameters over the production quantity q(t). The efficiency of this neutrosophic model is determined on making comparative analysis with crisp data sets. The neutrosophic model possesses high degree of flexibility and applicability in technology dominant manufacturing firms facilitating the decision makers to design optimal solutions.

Neutrosophic Sets and Systems, vol. 73/2024 {Proceedings of the ā€œMediterranean Conference on Three Decades of Neutrosophic and Plithogenic Theories and Applicationsā€ (MeCoNeT 2024)}


Neutrosophic Sets and Systems, vol. 73/2024 {Proceedings of the ā€œMediterranean Conference on Three Decades of Neutrosophic and Plithogenic Theories and Applicationsā€ (MeCoNeT 2024)}

Author: Florentin Smarandache

language: en

Publisher: Infinite Study

Release Date: 2024-12-01


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This volume contains the proceedings of the Mediterranean Conference on Neutrosophic Theory (MeCoNeT 2024), held at the Accademia Peloritana dei Pericolanti of the University of Messina on September 24-25, 2024. The event was organized by the MIFT Department (Mathematics, Computer Science, Physics, and Earth Sciences) of the University of Messina, marking the first international congress on neutrosophic theories outside the Americas. This milestone has firmly established the Mediterranean region as a key hub for research in the rapidly growing field of neutrosophic theory. The MeCoNeT 2024 conference drew over 100 participants from more than 15 countries, with more than 50 scientific contributions selected through a rigorous peer review process. The hybrid format of the event—featuring in-person sessions at the historical Accademia Peloritana dei Pericolanti and online parallel sessions—allowed for broad international participation. The conference thus offered an ideal platform for sharing interdisciplinary research and addressing contemporary challenges in mathematics and beyond.

Neutrosophic Sets and Systems, vol. 65/2024


Neutrosophic Sets and Systems, vol. 65/2024

Author: Florentin Smarandache

language: en

Publisher: Infinite Study

Release Date: 2024-03-15


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ā€œNeutrosophic Sets and Systemsā€ has been created for publications on advanced studies in neutrosophy, neutrosophic set, neutrosophic logic, neutrosophic probability, neutrosophic statistics that started in 1995 and their applications in any field, such as the neutrosophic structures developed in algebra, geometry, topology, etc. Neutrosophic Set and Neutrosophic Logic are generalizations of the fuzzy set and respectively fuzzy logic (especially of intuitionistic fuzzy set and respectively intuitionistic fuzzy logic). In neutrosophic logic a proposition has a degree of truth (T), a degree of indeterminacy (I), and a degree of falsity (F), where T, I, F are standard or non-standard subsets of ]-0, 1+[.