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