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Sustainable optimal ordering quantity for non-instantaneous deteriorating items under joint replenishment with substitution and carbon emission

Ranu Singh (Department of Mathematics and Scientific Computing, Madan Mohan Malaviya University of Technology, Gorakhpur, India)
Vinod Kumar Mishra (Department of Mathematics and Scientific Computing, Madan Mohan Malaviya University of Technology, Gorakhpur, India)

Kybernetes

ISSN: 0368-492X

Article publication date: 1 April 2021

Issue publication date: 5 January 2022

171

Abstract

Purpose

Carbon emission is a significant issue for the current business market and global warming. Nowadays, most countries have focused to reduce the environmental impact of business with durable financial benefits. The purpose of this study is to optimize the entire cost functions with carbon emission and to find the sustainable optimal ordering quantity for retailers.

Design/methodology/approach

This paper illustrates a sustainable inventory model having a set of two non-instantaneous substitutable deteriorating items under joint replenishment with carbon emission. In this model demand and deterioration rate are considered as deterministic, constant and triangular fuzzy numbers. The objective is to find the optimal ordering quantity for retailers and to minimize the total cost function per unit time with carbon emission. The model is then solved with the help of Maple software.

Findings

This paper presents a solution method and also develop an algorithm to determine the order quantities which optimize the total cost function. A numerical experiment illustrates the improvement in optimal total cost of the inventory model with substitution over without substitution. The graphical results show the convexity of the cost function. Finally, sensitivity analysis is given to get the impact of parameters and validity of the model.

Originality/value

This study considers a set of two non-instantaneous substitutable deteriorating items under joint replenishment with carbon emission. From the literature review, in the authors’ knowledge no researcher has undergone this kind of study.

Keywords

Citation

Singh, R. and Mishra, V.K. (2022), "Sustainable optimal ordering quantity for non-instantaneous deteriorating items under joint replenishment with substitution and carbon emission", Kybernetes, Vol. 51 No. 1, pp. 442-465. https://doi.org/10.1108/K-10-2020-0714

Publisher

:

Emerald Publishing Limited

Copyright © 2021, Emerald Publishing Limited

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