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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/123456789/36225
完整後設資料紀錄
DC 欄位值語言
dc.contributor.advisor陳文賢
dc.contributor.authorYi-Chien Linen
dc.contributor.author林義堅zh_TW
dc.date.accessioned2021-06-13T07:54:16Z-
dc.date.available2005-07-30
dc.date.copyright2005-07-30
dc.date.issued2005
dc.date.submitted2005-07-24
dc.identifier.citation一、中文部份
【1】 范振家,「減少誤期之排程處理-加班模式之建構」,國立中央大學機械工程研究所碩士論文(民國79年)
【2】 徐宗義,「零工式生產加班模式之研究」,國立政治大學資訊管理研究所碩士論文(民國92年)
【3】 陳建良,「排程概述」,機械工業雜誌,(民國84年)122-137
【4】 蘇文政,「零工工廠在異常環境下誤期縮減模式之構建」,元智工學院工業工程研究所碩士論文(民國85年)
二、英文部分
【1】 Appold, S. J., Harrison, B. and Kelley, M. R., “Spatially proximate inter-organizational networks, agglomeration economics, and technological performance in U.S. manufacturing”, Annual meeting of the Association of American Geographers (1993)
【2】 Baker, K. R., “Introduction to sequencing and scheduling”, New York: John Wiley & Sons (1974)
【3】 Baker, K. R. and Kanet, J. J., “Job shop scheduling with modified due dates”, Journal of Operations Management, Vol. 4, Iss. 1, (1983), pp. 11-22
【4】 Barrett, R. T. and Kadipasaoglu, S. N., “Dispatching Rules for a Dynamic Flow Shop”, Production and Inventory Management Journal, Vol. 31, Iss. 1, (1990), pp. 54-58
【5】 Blackstone, J. H., Phillips, D. T. and Hogg, G. L., “A state-of-the-art survey of dispatching rules for manufacturing job shop operations”, International Journal of Production Research, Vol. 20, No. 1, (1982), pp. 27-45
【6】 Chang, F-C R., “A study of due-date assignment rules with constrained tightness in a dynamic job shop”, Computers & Industrial Engineering, Vol. 31, Iss. 1-2 (1996), pp. 205-208
【7】 Chang, Y-L, Sueyoshi, T. and Sullivan, R. S., “Ranking dispatching rules by data envelopment analysis in a job shop environment”, IIS Transactions, Vol. 28, Iss. 8 (1996), pp. 631-642
【8】 Conway, R. W., Maxwell, W. L. and Miller, L. W., Reading Massachusetts: Addison-Wesley Publishing Company (1967)
【9】 French, S., “Sequencing and scheduling: an introduction to the mathematics of the job-shop”, Chichester: Ellis Horwood (1982)
【10】 Graham, R. L., Lawler, E. L., Lenstra, J. K. and Rinnooy Kan, A. H. G., “Optimization and Approximation in Deterministic Scheduling: A Survey”, Annals of Discrete Mathematics, Vol. 5 (1979), pp. 287-326
【11】 Herrmann, J. W., “Improving Manufacturing System Performance through Rescheduling”, Working Paper, University of Maryland, Institute for Systems Research, Department of Mechanical Engineering (2001)
【12】 Holthaus, O., “Design of efficient job shop scheduling rules”, Computers & Industrial Engineering, Vol. 33, Iss. 1-2 (1997), pp. 249-252
【13】 Holthaus, O. “Scheduling in job shops with machine breakdowns: an experimental study”, Computers & Industrial Engineering, Vol. 36, Iss. 1 (1999), pp. 137-162
【14】 Holthaus, O. and Rajendran, C., “Efficient dispatching rules for scheduling in a job shop”, International Journal of Production Economics, Vol. 48 (1997), pp. 87-105
【15】 Holthaus, O. and Rajendran, C., “Efficient jobshop dispatching rules: further developments”, Production Planning & Control, Vol. 11, No.2 (2000), pp. 171-178
【16】 Holthaus, O. and Rajendran, C., “A study on the performance of scheduling rules in buffer-constrained dynamic flowshops”, International Journal of Production Research, Vol. 40, No. 13 (2002), pp. 3041-3052
【17】 Jain, A. S. and Mareen, S. “A state-of-the-art review of job-shop scheduling techniques”, Technical Report, University of Dundee, Department of Applied Physics, Electronic and Mechanical Engineering (1998)
【18】 Jayamohan, M. S. and Rajendran, C., “New dispatching rules for shop scheduling: a step forward”, International Journal of Production Research, Vol. 38, No. 3 (2000), pp. 563-586
【19】 Jayamohan, M. S. and Rajendran, C., “Development and analysis of cost-based dispatching rules for job shop scheduling”, European Journal of Operational Research, Vol. 157, Iss. 2 (2004), pp. 307-321
【20】 Liu, K-C, “Dispatching rules for stochastic finite capacity scheduling”, Computers & Industrial Engineering, Vol. 35, Iss. 1-2 (1998), pp. 113-116
【21】 Panwalkar, S. S. and Iskander, W., “A Survey of Scheduling Rules”, Operations Research, Vol. 25, No. 1 (1977), pp. 45-61
【22】 Raghu, T. S. and Rajendran, C., “An efficient dynamic dispatching rule for scheduling in a job shop”, International Journal of Production Economics, Vol. 32, Iss. 3, (1993), pp. 301-313
【23】 Rajendran, C. and Holthaus, O., “A comparative study of dispatching rules in dynamic flowshops and jobshops”, European Journal of Operational Research, Vol. 116, Iss. 1 (1999), pp. 156-170
【24】 Reeja, M. K. and Rajendran, C., “Dispatching rules for scheduling in assembly jobshops – Part 1”, International Journal of Production Research, Vol. 38, No. 9 (2000a), pp. 2051-2066
【25】 Reeja, M. K. and Rajendran, C., “Dispatching rules for scheduling in assembly jobshops – Part 2”, International Journal of Production Research, Vol. 38, No. 10 (2000b), pp. 2349-2360
【26】 Sadeh, N., “Look Ahead Techniques for Micro-Opportunistic Job Shop Scheduling”, PhD thesis, Department of Computer Science, Carnegie Mellon University (1991)
【27】 Sarper, H. and Henry, M. C., “Combinatorial Evaluation of Six Dispatching Rules in A Dynamic Two-machine Flow Shop”, Omega, Vol. 24, Iss. 1 (1996), pp. 73-81
【28】 Sule, D. R., “Industrial Scheduling”, Boston: PWS Publishing Company (1997)
【29】 Veral, E. A., “Computer simulation of due-date setting in multi-machine job shop”, Computers & Industrial Engineering, Vol. 41, Iss. 1 (2001), pp. 77-94
【30】 Waikar, A. M., Sarker, B. R. and Lal, A. M., “A comparative study of some priority dispatching rules under different shop loads”, Production Planning & Control, Vol. 6, No. 4 (1995), pp. 301-310
【31】 Wilbrecht, J. K. and Prescott, W. B., “The Influence of Setup Time on Job Shop Performance”, Management Science, Vol. 16, No.4 (1969), pp. B274-B280
【32】 Yang, S. and Wang, D., “Constraint satisfaction adaptive neural network and heuristics combined approaches for generalized job-shop scheduling”, IEEE Transactions on Neural Networks, Vol. 11, Iss. 2 (2000), 474-486
dc.identifier.urihttp://tdr.lib.ntu.edu.tw/jspui/handle/123456789/36225-
dc.description.abstract時至今日,企業面臨快速變化的市場需求,無不致力於改善作業流程,以更低的價格提供更好的產品與服務,其中尤以現場的生產排程問題較為複雜而難以管理。現行的軟體系統如企業資源規劃(ERP)即希望能夠藉由資訊科技解決此類生產排程問題。然而,這些系統皆並未考慮到企業的產能是有限的,往往造成規劃的結果不可行。
目前大多數的現場排程問題為零工式生產排程(job shop scheduling)問題,派工法則(dispatching rule)因具有簡單易懂及求解快速的特性,為求解零工式生產排程問題常用的方法之一。但使用派工法則得到的排程結果並不一定能滿足所有生產排程的目標,例如無法滿足產品的交期。在這種情況下,企業常使用加班使工件能在交期之前完成,這與過去研究僅使用派工法則求解一次即結束不同。本研究探討不同的派工法則產生的排程起始解對加班模式的影響,同時針對過去加班模式的缺失提出修正的方法。實驗模擬考慮機器數、工件數、最大操作時間、交期鬆緊因子(due date allowance factor)、每日最大加班限制等5個實驗因子設置,利用總延遲時間、延遲工件數、平均流程時間3項績效評估指標,對55個派工法則進行加班前後的績效評估。
實驗結果顯示,大多數加班前表現較佳的派工法則在加班後的表現亦不差,少數加班前表現較差的派工法則可透過較大的加班量達到與加班前表現較佳的派工法則接近的表現,但加班帶來的成本不可忽視。在交期設定較緊的情況下,我們發現SPT.TWK及SPT.TWKR等派工法則可在多項績效評估指標上皆有十分理想的表現。未來的研究者可將本研究延伸至不同的生產系統,如流程式生產(flow shop)等。此外,加班的成本及可能與正常工作時間不同的工作效率亦可加入考慮。
zh_TW
dc.description.abstractDue to the rapidly changing demand, corporations now put more emphasis on improving their workflow in order to provide better products and services with lower prices. The production scheduling problem is especially complicated and difficult to manage. Although current software and information systems, such as ERP, are designed to solve this kind of problem, they neglect the limitations of capacity, and usually produce infeasible planning results.
At present, most scheduling problems are job shop related. Dispatching rules, which are easy to understand and efficient, are one of the most common approaches to solving job shop scheduling problems. Nevertheless, the results generated by dispatching rules do not necessarily meet the goals of production scheduling. For instance, the due date of products may not be satisfied. In this case, having employees work overtime has been commonly used as a way to meet the delivery schedules, which is different from previous research where the scheduling problem was only solved by dispatching rules. In this study, the effects of different initial solutions resulting from different dispatching rules on overtime models are explored. The shortcomings of previous overtime models are also identified and a modified overtime model is proposed in this work. The experimental setting takes five experimental factors into account: the number of machines, the number of jobs, the maximum processing time, the due date allowance factor, and the maximum daily overtime. Fifty-five dispatching rules are evaluated both before and after overtime by three performance metrics: total tardiness, number of tardy jobs, and mean flow time.
The experimental results show that most dispatching rules that outperform others before overtime usually also perform well after overtime. On the other hand, by using more overtime, some of the dispatching rules that perform poorly before overtime can catch up with those performing well before overtime. However, the cost of overtime cannot be neglected. In the case of tighter due date settings, we observe that SPT.TWK and SPT.TWKR outperform other dispatching rules both before and after overtime in terms of the three performance metrics. In future implementations, our model could be extended to different production systems, such as flow shops. In addition, the cost and efficiency of overtime compared to normal working hours could be considered.
en
dc.description.provenanceMade available in DSpace on 2021-06-13T07:54:16Z (GMT). No. of bitstreams: 1
ntu-94-R92725046-1.pdf: 1190317 bytes, checksum: 56e3c30e7d06ef5500b96506b63e3fa4 (MD5)
Previous issue date: 2005
en
dc.description.tableofcontents謝詞 三
論文摘要 四
THESIS ABSTRACT 五
目錄 七
表次 九
圖次 一五
第一章 緒論 1
第一節 研究背景與目的 1
第二節 研究範圍 3
第三節 研究流程 4
第二章 文獻探討 6
第一節 排程問題 6
第二節 零工式生產排程問題 9
第三節 派工法則 11
第四節 加班模式 17
第三章 研究方法 20
第一節 基本假設 20
第二節 符號一覽表 21
第三節 模擬模式的建構 23
第四節 模擬模式設定 42
第五節 實驗設計 57
第四章 實驗結果分析與討論 58
第一節 績效評估指標的比較依據 58
第二節 實驗結果 60
第五章 結論與未來研究建議 87
第一節 結論 87
第二節 未來研究建議 89
參考文獻 90
附錄一 加班前後各派工法則之總延遲時間 94
附錄二 加班前後各派工法則之延遲工件數 143
附錄三 加班前後各派工法則之平均延遲時間 192
簡歷 241
dc.language.isozh-TW
dc.subject零工式生產排程zh_TW
dc.subject加班模式zh_TW
dc.subject派工法則zh_TW
dc.subjectjob shop schedulingen
dc.subjectdispatching ruleen
dc.subjectovertime modelen
dc.title派工法則對加班模式影響之分析zh_TW
dc.titleAn Analysis on the Effects of Dispatching Rules on Overtime Modelsen
dc.typeThesis
dc.date.schoolyear93-2
dc.description.degree碩士
dc.contributor.oralexamcommittee陳春龍,李瑞庭
dc.subject.keyword零工式生產排程,派工法則,加班模式,zh_TW
dc.subject.keywordjob shop scheduling,dispatching rule,overtime model,en
dc.relation.page241
dc.rights.note有償授權
dc.date.accepted2005-07-25
dc.contributor.author-college管理學院zh_TW
dc.contributor.author-dept資訊管理學研究所zh_TW
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