Simultaneous Optimization of Block Replacement and Spare Part Ordering Time for a Multi Component System with Separate Spare Part Ordering for Block and Failure Replacements

A block replacement schedule can be optimized simultaneously with a spare parts ordering schedule, since all items are replaced at a constant interval. The solution of joint optimization for spare parts ordering time and block replacement gives lower costs compared to separate optimization of orderi...

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Main Authors: Farid Mardin, Rommert Dekker
Format: Article
Language:English
Published: ITB Journal Publisher 2016-11-01
Series:Journal of Engineering and Technological Sciences
Subjects:
Online Access:http://journals.itb.ac.id/index.php/jets/article/view/1943/1843
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spelling doaj-7b4e71d6ec094e8bb2653a3e8ba107e52020-11-25T03:45:01ZengITB Journal PublisherJournal of Engineering and Technological Sciences2337-57792338-55022016-11-0148549552210.5614/j.eng.technol.sci.2016.48.5.1Simultaneous Optimization of Block Replacement and Spare Part Ordering Time for a Multi Component System with Separate Spare Part Ordering for Block and Failure ReplacementsFarid Mardin0Rommert Dekker1Industrial Engineering Department, Hasanuddin University, IndonesiaErasmus School of Economics, Erasmus University Rotterdam,The NetherlandsA block replacement schedule can be optimized simultaneously with a spare parts ordering schedule, since all items are replaced at a constant interval. The solution of joint optimization for spare parts ordering time and block replacement gives lower costs compared to separate optimization of ordering time and replacement time. The spare parts for replacement can be classified as stochastic demand for failure replacement and deterministic demand for block replacement. In this paper, we propose a simulation model for a separate spare parts ordering schedule. The solution was compared to the solution for a model with common spare parts for both failure and block replacement. The system has N identical components, each with a Weibull lifetime distribution. The costs of failure and block replacements, and also the costs of ordering, holding and shortage of spare parts are given. The proposed model was shown to perform better than the common order model. Also, compared to the age replacement model, the solution of the proposed model is relatively similar, yet the economies of scale would be an advantage for the block replacement over age replacement.http://journals.itb.ac.id/index.php/jets/article/view/1943/1843block replacementdeterministic demandjoint optimizationmaintenancespare parts inventorystochastic demand
collection DOAJ
language English
format Article
sources DOAJ
author Farid Mardin
Rommert Dekker
spellingShingle Farid Mardin
Rommert Dekker
Simultaneous Optimization of Block Replacement and Spare Part Ordering Time for a Multi Component System with Separate Spare Part Ordering for Block and Failure Replacements
Journal of Engineering and Technological Sciences
block replacement
deterministic demand
joint optimization
maintenance
spare parts inventory
stochastic demand
author_facet Farid Mardin
Rommert Dekker
author_sort Farid Mardin
title Simultaneous Optimization of Block Replacement and Spare Part Ordering Time for a Multi Component System with Separate Spare Part Ordering for Block and Failure Replacements
title_short Simultaneous Optimization of Block Replacement and Spare Part Ordering Time for a Multi Component System with Separate Spare Part Ordering for Block and Failure Replacements
title_full Simultaneous Optimization of Block Replacement and Spare Part Ordering Time for a Multi Component System with Separate Spare Part Ordering for Block and Failure Replacements
title_fullStr Simultaneous Optimization of Block Replacement and Spare Part Ordering Time for a Multi Component System with Separate Spare Part Ordering for Block and Failure Replacements
title_full_unstemmed Simultaneous Optimization of Block Replacement and Spare Part Ordering Time for a Multi Component System with Separate Spare Part Ordering for Block and Failure Replacements
title_sort simultaneous optimization of block replacement and spare part ordering time for a multi component system with separate spare part ordering for block and failure replacements
publisher ITB Journal Publisher
series Journal of Engineering and Technological Sciences
issn 2337-5779
2338-5502
publishDate 2016-11-01
description A block replacement schedule can be optimized simultaneously with a spare parts ordering schedule, since all items are replaced at a constant interval. The solution of joint optimization for spare parts ordering time and block replacement gives lower costs compared to separate optimization of ordering time and replacement time. The spare parts for replacement can be classified as stochastic demand for failure replacement and deterministic demand for block replacement. In this paper, we propose a simulation model for a separate spare parts ordering schedule. The solution was compared to the solution for a model with common spare parts for both failure and block replacement. The system has N identical components, each with a Weibull lifetime distribution. The costs of failure and block replacements, and also the costs of ordering, holding and shortage of spare parts are given. The proposed model was shown to perform better than the common order model. Also, compared to the age replacement model, the solution of the proposed model is relatively similar, yet the economies of scale would be an advantage for the block replacement over age replacement.
topic block replacement
deterministic demand
joint optimization
maintenance
spare parts inventory
stochastic demand
url http://journals.itb.ac.id/index.php/jets/article/view/1943/1843
work_keys_str_mv AT faridmardin simultaneousoptimizationofblockreplacementandsparepartorderingtimeforamulticomponentsystemwithseparatesparepartorderingforblockandfailurereplacements
AT rommertdekker simultaneousoptimizationofblockreplacementandsparepartorderingtimeforamulticomponentsystemwithseparatesparepartorderingforblockandfailurereplacements
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