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  1. NTU Theses and Dissertations Repository
  2. 管理學院
  3. 資訊管理學系
請用此 Handle URI 來引用此文件: http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/84899
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dc.contributor.advisor孔令傑(Ling-Chieh Kung)
dc.contributor.authorJia-Yu Yaoen
dc.contributor.author姚佳妤zh_TW
dc.date.accessioned2023-03-19T22:31:36Z-
dc.date.copyright2022-08-30
dc.date.issued2022
dc.date.submitted2022-08-26
dc.identifier.citationAghezzaf, E.H., M.A. Jamali, D. Ait-Kadi. 2007. An integrated production and preventive maintenance planning model. European Journal of Operational Research 181(2) 679– 685. Aghezzaf, E.H., N.M. Najid. 2008. Integrated production planning and preventive main- tenance in deteriorating production systems. Information Sciences 178(17) 3382–3392. Baker, K.R., J.W.M. Bertrand. 1981. A comparison of due-date selection rules. AIIE Transactions 13(2) 123–131. Glover, F. 1989. Tabu search—part I. ORSA Journal on Computing 1(3) 190–206. Graham, R.L., E.L. Lawler, J.K. Lenstra, A.R. Kan. 1979. Optimization and approx- imation in deterministic sequencing and scheduling: a survey. Annals of Discrete Mathematics 5 287–326. Hwang, M., D. Choi, P. Kim. 2011. Least slack time rate first: an efficient scheduling al- gorithm for pervasive computing environment. Journal of Universal Computer Science 17(6) 912–925. Jamshidi, R., M.M.S. Esfahani. 2015. Reliability-based maintenance and job scheduling for identical parallel machines. International Journal of Production Research 53(4) 1216–1227. Kanet, J.J., X. Li. 2004. A weighted modified due date rule for sequencing to minimize weighted tardiness. Journal of Scheduling 7(4) 261–276. Kubzin, M.A., V.A. Strusevich. 2006. Planning machine maintenance in two-machine shop scheduling. Operations Research 54(4) 789–800. Lee, C.Y. 1996. Machine scheduling with an availability constraint. Journal of Global Optimization 9(3-4) 395–416. Lee, C.Y., Z.L. Chen. 2000. Scheduling jobs and maintenance activities on parallel ma- chines. Naval Research Logistics 47(2) 145–165. Lenstra, J.K., A.R. Kan, P. Brucker. 1977. Complexity of machine scheduling problems. Annals of Discrete Mathematics 1 343–362. Liu, Q., M. Dong, F.F. Chen. 2018. Single-machine-based joint optimization of predictive maintenance planning and production scheduling. Robotics and Computer-Integrated Manufacturing 51 238–247. Ma, Y., C. Chu, C. Zuo. 2010. A survey of scheduling with deterministic machine avail- ability constraints. Computers & Industrial Engineering 58(2) 199–211. Schmidt, G. 2000. Scheduling with limited machine availability. European Journal of Operational Research 121(1) 1–15. Varnier, C., N. Zerhouni. 2012. Scheduling predictive maintenance in flow-shop. Prog- nostics and System Health Management Conference 1–6. Zhao, S., L. Wang, Y. Zheng. 2014. Integrating production planning and maintenance: an iterative method. Industrial Management & Data Systems 114(2) 162–182.
dc.identifier.urihttp://tdr.lib.ntu.edu.tw/jspui/handle/123456789/84899-
dc.description.abstract排程問題中我們常常需要針對工作生產排程以及機台保養進行權衡取捨。在實際生產過程中,若是暫停生產工作並對機台進行維護,則生產排程會被延誤,可能會迫使工作無法如期完成。但若一直不對機台進行保養維護,則生產可能會由於機台們的機況差,導致生產所需時間延長,使得工作完成時間依然超過交期。因此,決定機台何時該生產、何時該維護才能最大化效益是一個值得討論的重要問題。 本研究針對流線型多階段生產排程與保養排程的聯合調度問題進行探討。在我們的問題中,於不考慮保養排程的狀況下,每台機器必須以同樣的順序處理所有工作,而機器在維護後工作生產所需時間將減少,本研究主要目標為最小化加權後的總延遲時間。我們證明此問題是一個 NP-hard 問題,並且發現混合整數規劃模型無法在實務上可接受的時間內找到最佳解。因此,我們提出了一種啟發式演算法來解決我們的問題。該演算法可分為三個部分,分別為初始化工作列表、工作交換以及保養安排,而此演算法是基於禁忌搜索演算法和貪婪演算法進行延伸。為了證明此啟發式演算法的有效性以及穩健性,我們生成了十三種情境,並使用我們的啟發式演算法與十五種不同的演算方法進行比較。結果顯示,我們的演算法可以有效地減少計算時間並求得近似解,且在訂單大多不緊急的情境中表現更好。zh_TW
dc.description.abstractThere is always a trade-off between production and maintenance. In practice, production has to be suspended for maintenance. This will cause the production schedule to pause and make some jobs not to be completed by the due times. However, continuous production without maintenance may lead to long processing times due to poor machine conditions, which may also result in tardiness. Therefore, the determination of the production and maintenance timing is an important issue worthy of discussion. In this study, we consider a joint production scheduling and preventive maintenance problem in a permutation flow shop environment. The job processing sequence must be the same on each machine, and the job production times will be reduced after machine maintenance. The objective is to minimize the total weighted tardiness. Because the problem is NP-hard, it is too time-consuming to obtain an optimal solution. Therefore, we propose a heuristic algorithm to solve our problem. This algorithm can be divided into three parts, which are job listing, job swapping, and maintenance scheduling, and is based on a combination of Tabu search and greedy search. To demonstrate the effectiveness and robustness of our algorithm, we generate thirteen scenarios and compare our heuristic algorithm with fifteen different methods. The results show that our algorithm can efficiently reduce the calculation time while obtaining good feasible solutions. Our algorithm performs especially good in the non-urgent scenario.en
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dc.description.tableofcontentsList of Figures vi List of Tables vii 1 Introduction 1 1.1 Background and motivation ......................... 1 1.2 Research objectives.............................. 2 1.3 Research plan................................. 3 2 Literature Review 4 2.1 Studies with exogenous job attributes.................... 4 2.2 Studies with endogenous job attributes................... 6 2.3 Difference from the major reference..................... 7 3 Problem Description and Formulation 9 3.1 Problem description ............................. 9 3.2 Numerical example.............................. 11 3.3 Model formulation .............................. 12 4 Algorithm 17 4.1 Joblisting................................... 20 4.2 Jobs wapping based on Tabu search..................... 20 4.3 Maintenance scheduling ........................... 22 4.4 Maintenance conflict elimination ...................... 23 4.5 Numerical example.............................. 24 5 Performance Evaluation 29 5.1 Experiment design .............................. 29 5.2 Solution performance............................. 34 5.3 Robustness check............................... 35 6 Conclusions and Future Directions 41 6.1 Conclusions.................................. 41 6.2 Futuredirections ............................... 42 Bibliography 43
dc.language.isoen
dc.subject機台排程zh_TW
dc.subject貪婪演算法zh_TW
dc.subject禁忌搜索演算法zh_TW
dc.subject流線型排程zh_TW
dc.subject預防性保養排程zh_TW
dc.subject混合整數規劃zh_TW
dc.subjectMixed Integer Programmingen
dc.subjectMachine scheduling problemen
dc.subjectPreventive maintenanceen
dc.subjectTabu searchen
dc.subjectFlow shop schedulingen
dc.subjectGreedy searchen
dc.title流線型多階段生產排程與保養排程聯合調度問題探討zh_TW
dc.titleA Joint Production Scheduling and Preventive Maintenance Problem in a Multi-stage Flow Shop Environmenten
dc.typeThesis
dc.date.schoolyear110-2
dc.description.degree碩士
dc.contributor.oralexamcommittee莊皓鈞(Hao-Chun Chuang),李家岩(Chia-Yen Lee)
dc.subject.keyword流線型排程,預防性保養排程,機台排程,混合整數規劃,禁忌搜索演算法,貪婪演算法,zh_TW
dc.subject.keywordFlow shop scheduling,Preventive maintenance,Machine scheduling problem,Mixed Integer Programming,Tabu search,Greedy search,en
dc.relation.page45
dc.identifier.doi10.6342/NTU202202746
dc.rights.note同意授權(限校園內公開)
dc.date.accepted2022-08-26
dc.contributor.author-college管理學院zh_TW
dc.contributor.author-dept資訊管理學研究所zh_TW
dc.date.embargo-lift2022-08-30-
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