Simulation-Based Optimization of a Two-Echelon Continuous Review Inventory Model with Lot Size-Dependent Lead Time

This study analyzes a stochastic continuous review inventory system (<i>Q</i>,<i>r</i>) using a simulation-based optimization model. The lead time depends on lot size, unit production time, setup time, and a shop floor factor that represents moving, waiting, and lot size insp...

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Main Authors: Ibrahim Alharkan, Mustafa Saleh, Mageed Ghaleb, Abdulsalam Farhan, Ahmed Badwelan
Format: Article
Language:English
Published: MDPI AG 2020-08-01
Series:Processes
Subjects:
Online Access:https://www.mdpi.com/2227-9717/8/9/1014
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spelling doaj-fd933f14d7b94f2dafb020033f9d82472020-11-25T03:52:31ZengMDPI AGProcesses2227-97172020-08-0181014101410.3390/pr8091014Simulation-Based Optimization of a Two-Echelon Continuous Review Inventory Model with Lot Size-Dependent Lead TimeIbrahim Alharkan0Mustafa Saleh1Mageed Ghaleb2Abdulsalam Farhan3Ahmed Badwelan4Industrial Engineering Department, College of Engineering, King Saud University, Riyadh 11421, Saudi ArabiaIndustrial Engineering Department, College of Engineering, King Saud University, Riyadh 11421, Saudi ArabiaIndustrial Engineering Department, College of Engineering, King Saud University, Riyadh 11421, Saudi ArabiaIndustrial Engineering Department, College of Engineering, King Saud University, Riyadh 11421, Saudi ArabiaIndustrial Engineering Department, College of Engineering, King Saud University, Riyadh 11421, Saudi ArabiaThis study analyzes a stochastic continuous review inventory system (<i>Q</i>,<i>r</i>) using a simulation-based optimization model. The lead time depends on lot size, unit production time, setup time, and a shop floor factor that represents moving, waiting, and lot size inspection times. A simulation-based model is proposed for optimizing order quantity (<i>Q</i>) and reorder point (<i>r</i>) that minimize the total inventory costs (holding, backlogging, and ordering costs) in a two-echelon supply chain, which consists of two identical retailers, a distributor, and a supplier. The simulation model is created with Arena software and validated using an analytical model. The model is interfaced with the OptQuest optimization tool, which is embedded in the Arena software, to search for the least cost lot sizes and reorder points. The proposed model is designed for general demand distributions that are too complex to be solved analytically. Hence, for the first time, the present study considers the stochastic inventory continuous review policy (<i>Q</i>,<i>r</i>) in a two-echelon supply chain system with lot size-dependent lead time <i>L</i>(<i>Q</i>). An experimental study is conducted, and results are provided to assess the developed model. Results show that the optimized <i>Q</i> and <i>r</i> for different distributions of daily demand are not the same even if the associated total inventory costs are close to each other.https://www.mdpi.com/2227-9717/8/9/1014stochastic inventory problemdependent lead timesimulation-based optimizationArena
collection DOAJ
language English
format Article
sources DOAJ
author Ibrahim Alharkan
Mustafa Saleh
Mageed Ghaleb
Abdulsalam Farhan
Ahmed Badwelan
spellingShingle Ibrahim Alharkan
Mustafa Saleh
Mageed Ghaleb
Abdulsalam Farhan
Ahmed Badwelan
Simulation-Based Optimization of a Two-Echelon Continuous Review Inventory Model with Lot Size-Dependent Lead Time
Processes
stochastic inventory problem
dependent lead time
simulation-based optimization
Arena
author_facet Ibrahim Alharkan
Mustafa Saleh
Mageed Ghaleb
Abdulsalam Farhan
Ahmed Badwelan
author_sort Ibrahim Alharkan
title Simulation-Based Optimization of a Two-Echelon Continuous Review Inventory Model with Lot Size-Dependent Lead Time
title_short Simulation-Based Optimization of a Two-Echelon Continuous Review Inventory Model with Lot Size-Dependent Lead Time
title_full Simulation-Based Optimization of a Two-Echelon Continuous Review Inventory Model with Lot Size-Dependent Lead Time
title_fullStr Simulation-Based Optimization of a Two-Echelon Continuous Review Inventory Model with Lot Size-Dependent Lead Time
title_full_unstemmed Simulation-Based Optimization of a Two-Echelon Continuous Review Inventory Model with Lot Size-Dependent Lead Time
title_sort simulation-based optimization of a two-echelon continuous review inventory model with lot size-dependent lead time
publisher MDPI AG
series Processes
issn 2227-9717
publishDate 2020-08-01
description This study analyzes a stochastic continuous review inventory system (<i>Q</i>,<i>r</i>) using a simulation-based optimization model. The lead time depends on lot size, unit production time, setup time, and a shop floor factor that represents moving, waiting, and lot size inspection times. A simulation-based model is proposed for optimizing order quantity (<i>Q</i>) and reorder point (<i>r</i>) that minimize the total inventory costs (holding, backlogging, and ordering costs) in a two-echelon supply chain, which consists of two identical retailers, a distributor, and a supplier. The simulation model is created with Arena software and validated using an analytical model. The model is interfaced with the OptQuest optimization tool, which is embedded in the Arena software, to search for the least cost lot sizes and reorder points. The proposed model is designed for general demand distributions that are too complex to be solved analytically. Hence, for the first time, the present study considers the stochastic inventory continuous review policy (<i>Q</i>,<i>r</i>) in a two-echelon supply chain system with lot size-dependent lead time <i>L</i>(<i>Q</i>). An experimental study is conducted, and results are provided to assess the developed model. Results show that the optimized <i>Q</i> and <i>r</i> for different distributions of daily demand are not the same even if the associated total inventory costs are close to each other.
topic stochastic inventory problem
dependent lead time
simulation-based optimization
Arena
url https://www.mdpi.com/2227-9717/8/9/1014
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AT mageedghaleb simulationbasedoptimizationofatwoecheloncontinuousreviewinventorymodelwithlotsizedependentleadtime
AT abdulsalamfarhan simulationbasedoptimizationofatwoecheloncontinuousreviewinventorymodelwithlotsizedependentleadtime
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