2014Unpublished venueRequires access

Two warehouse inventory model with stock-level dependent demand rate and time varying holding cost under shortages

Yogendra Kumar Rajoria, Seema Saini, S.R. Singh

Open publisher page 5 citations

Abstract

The purpose of this article is to evaluate the value of integrating tactical warehouse and inventory decisions. Therefore, a global warehouse and inventory model is presented and solved. We have considered two separate warehouses, one is an own warehouse (OW) of finite dimension and other a rented warehouse (RW), for an infinite planning horizon. Model focuses on stock-level dependent demand rate and a time dependent holding cost. We considered holding cost is an increasing function of time. In addition, we allow for shortages and complete backlogging. A numerical example and sensitivity analysis on some parameters are implemented to illustrate the model

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What this paper is about

The purpose of this article is to evaluate the value of integrating tactical warehouse and inventory decisions. Therefore, a global warehouse and inventory model is presented and solved. We have considered two separate warehouses, one is an own warehouse (OW) of finite dimension and other a rented warehouse (RW), for an infinite planning horizon. Model focuses on stock-level dependent demand rate and a time dependent holding cost. We considered holding cost is an increasing function of time. In addition, we allow for shortages and complete backlogging. A numerical example and sensitivity analysis on some parameters are implemented to illustrate the model

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OpenAlex reports 5 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

The purpose of this article is to evaluate the value of integrating tactical warehouse and inventory decisions. Therefore, a global warehouse and inventory model is presented and solved. We have considered two separate warehouses, one is an own warehouse (OW) of finite dimension and other a rented warehouse (RW), for an infinite planning horizon. Model focuses on stock-level dependent demand rate and a time dependent holding cost. We considered holding cost is an increasing function of time. In addition, we allow for shortages and complete backlogging. A numerical example and sensitivity analysis on some parameters are implemented to illustrate the model

Key concepts: Warehouse, Holding cost, Time horizon, Economic shortage, Stock (firearms), Safety stock, Computer science, Operations research

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