Mathematical modeling for exploring the effects of overtime option, rework, and discontinuous inventory issuing policy on EMQ model

This study employs mathematical modeling to explore the effects of overtime option, rework, and discontinuous end-item issuing policy on the economic manufacturing quantity (EMQ) model. Conventional EMQ model assumed that all products fabricated are of good quality and are issued under continuous po...

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Main Authors: Singa Wang Chiu, Hong-Dar Lin, Chung-Li Chou, Yuan-Shyi Peter Chiu
Format: Article
Language:English
Published: Growing Science 2018-09-01
Series:International Journal of Industrial Engineering Computations
Subjects:
Online Access:http://www.growingscience.com/ijiec/Vol9/IJIEC_2017_37.pdf
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spelling doaj-3d821fca6416473cbbb75a6b803c06dc2020-11-25T00:21:09ZengGrowing ScienceInternational Journal of Industrial Engineering Computations1923-29261923-29342018-09-019447949010.5267/j.ijiec.2017.11.004Mathematical modeling for exploring the effects of overtime option, rework, and discontinuous inventory issuing policy on EMQ model Singa Wang ChiuHong-Dar LinChung-Li ChouYuan-Shyi Peter ChiuThis study employs mathematical modeling to explore the effects of overtime option, rework, and discontinuous end-item issuing policy on the economic manufacturing quantity (EMQ) model. Conventional EMQ model assumed that all products fabricated are of good quality and are issued under continuous policy. In real world, however, nonconforming items are randomly produced, due to diverse unexpected factors in fabrication process. When finished items are to be distributed to outside locations, discontinuous multi-shipment policy is often used rather than continuous rule. In addition, with the intention of increasing short-term capacity or shortening replenishment cycle length to smooth the production planning, adopting overtime option can be an effective strategy. To cope with the aforementioned features in real production systems, this study incorporates overtime option, rework, and multi-shipment policy into the EMQ model and explores their joint effects on optimal lot size and number of shipments, and on other relevant system parameters. Mathematical modeling and Hessian matrix equations enable us to derive the optimal policies to the problem. Through the use of numerical example, the applicability of research result is exhibited and a variety of significant effects of these features on the proposed system are revealed.http://www.growingscience.com/ijiec/Vol9/IJIEC_2017_37.pdfOptimizationReplenishment lot-size and shipmentsOvertimeReworkEconomic manufacturing quantityMathematical modelingDiscontinuous issuing policy
collection DOAJ
language English
format Article
sources DOAJ
author Singa Wang Chiu
Hong-Dar Lin
Chung-Li Chou
Yuan-Shyi Peter Chiu
spellingShingle Singa Wang Chiu
Hong-Dar Lin
Chung-Li Chou
Yuan-Shyi Peter Chiu
Mathematical modeling for exploring the effects of overtime option, rework, and discontinuous inventory issuing policy on EMQ model
International Journal of Industrial Engineering Computations
Optimization
Replenishment lot-size and shipments
Overtime
Rework
Economic manufacturing quantity
Mathematical modeling
Discontinuous issuing policy
author_facet Singa Wang Chiu
Hong-Dar Lin
Chung-Li Chou
Yuan-Shyi Peter Chiu
author_sort Singa Wang Chiu
title Mathematical modeling for exploring the effects of overtime option, rework, and discontinuous inventory issuing policy on EMQ model
title_short Mathematical modeling for exploring the effects of overtime option, rework, and discontinuous inventory issuing policy on EMQ model
title_full Mathematical modeling for exploring the effects of overtime option, rework, and discontinuous inventory issuing policy on EMQ model
title_fullStr Mathematical modeling for exploring the effects of overtime option, rework, and discontinuous inventory issuing policy on EMQ model
title_full_unstemmed Mathematical modeling for exploring the effects of overtime option, rework, and discontinuous inventory issuing policy on EMQ model
title_sort mathematical modeling for exploring the effects of overtime option, rework, and discontinuous inventory issuing policy on emq model
publisher Growing Science
series International Journal of Industrial Engineering Computations
issn 1923-2926
1923-2934
publishDate 2018-09-01
description This study employs mathematical modeling to explore the effects of overtime option, rework, and discontinuous end-item issuing policy on the economic manufacturing quantity (EMQ) model. Conventional EMQ model assumed that all products fabricated are of good quality and are issued under continuous policy. In real world, however, nonconforming items are randomly produced, due to diverse unexpected factors in fabrication process. When finished items are to be distributed to outside locations, discontinuous multi-shipment policy is often used rather than continuous rule. In addition, with the intention of increasing short-term capacity or shortening replenishment cycle length to smooth the production planning, adopting overtime option can be an effective strategy. To cope with the aforementioned features in real production systems, this study incorporates overtime option, rework, and multi-shipment policy into the EMQ model and explores their joint effects on optimal lot size and number of shipments, and on other relevant system parameters. Mathematical modeling and Hessian matrix equations enable us to derive the optimal policies to the problem. Through the use of numerical example, the applicability of research result is exhibited and a variety of significant effects of these features on the proposed system are revealed.
topic Optimization
Replenishment lot-size and shipments
Overtime
Rework
Economic manufacturing quantity
Mathematical modeling
Discontinuous issuing policy
url http://www.growingscience.com/ijiec/Vol9/IJIEC_2017_37.pdf
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