博碩士論文 92446007 詳細資訊




以作者查詢圖書館館藏 以作者查詢臺灣博碩士 以作者查詢全國書目 勘誤回報 、線上人數:45 、訪客IP:18.117.154.134
姓名 林雅惠(Ya-Hui Lin)  查詢紙本館藏   畢業系所 工業管理研究所
論文名稱 不完美生產系統的最佳化生產、檢驗與維護策略
(Optimization of production, inspection and maintenance strategy for imperfect production system)
相關論文
★ 應用灰色理論於有機農產品之經營管理— 需求預測及關鍵成功因素探討★ NAND型Flash價格與交運量預測在風險分析下之決策模式
★ 工業電腦用無鉛晶片組最適存貨政策之研究-以A公司為例★ 砷化鎵代工廠磊晶之最適存貨管理-以W公司為例
★ 資訊分享&決策制定下產銷協同關係之研究 -以IC設計業為例★ 應用分析層級法於電子化學品業委外供應商評選準則之研究
★ 應用資料探勘於汽車售服零件庫存滯銷因素分析-以C公司為例★ 多目標規劃最佳六標準差水準: 以薄膜電晶體液晶顯示器C公司製造流程為例
★ 以資料探勘技術進行消費者返廠定期保養之實證研究★ 以價值鏈觀點探討品牌公司關鍵組織流程之取決-以S公司為例
★ 應用產銷協同規劃之流程改善於化纖產業-現況改善與效益分析★ 權力模式與合作關係對於報價策略之影響研究—以半導體產業A公司為例
★ 應用資料探勘於汽車製造業之庫存原因分析★ 以類神經網路預測代工費報價---以中小面板產業C公司為例
★ 電路板產業存貨改善研究-以N公司為例★ 運用六標準差改善機台備用零件(Spare parts)存貨管理
檔案 [Endnote RIS 格式]    [Bibtex 格式]    [相關文章]   [文章引用]   [完整記錄]   [館藏目錄]   [檢視]  [下載]
  1. 本電子論文使用權限為同意立即開放。
  2. 已達開放權限電子全文僅授權使用者為學術研究之目的,進行個人非營利性質之檢索、閱讀、列印。
  3. 請遵守中華民國著作權法之相關規定,切勿任意重製、散佈、改作、轉貼、播送,以免觸法。

摘要(中) 對於大部分的製造業而言,批量生產模式最被為廣泛使用,因此存貨管理一直是相當重要的議題。在許多生產存貨模式的文獻中已探討各種狀況的傳統經濟生產批量(Economic Production Quantity,EPQ)問題,並且也有很多研究改變或放寬傳統EPQ模式的基本假設條件,使得模式更符合實際生產狀態。但是隨著社會環境與全球經濟型態的變化,總成本結構與以往的生產條件大不相同,並且在消費者對於產品品質日益要求嚴格的情形下,以及生產機台設備的改良進步,在考量總成本最小的同時,也需將產品檢驗、設備之預防保養以及不良品與企業相關成本列入考量,以冀有一個更符合實務的經濟生產批量策略。
在不完美製程中,製程服從具有遞增危險率的一般退化分配,在這樣的退化性生產系統中,預防維護(preventive maintenance,PM)活動通常是不完美的,生產系統在實施PM之後將不會像新的一樣好,但會依據PM水準而成一定比例的減少系統的年齡。本研究乃在不完美製程(Imperfect Process)與不完美維護(Imperfect maintenance)之情形下,對於訂定經濟生產批量與最佳維護策略,分別探討三種生產條件對於生產總成本的影響。第一種模式為考慮製程進行小修與考慮檢驗時間,第二種模式為第一種模式之推廣為考慮檢驗誤差、保養誤差與製程小修,並各發展出一個整合模式。最後亦利用模型的建立以韋伯衝擊模式(Weibull shock model)為例進行數值分析,在期望總成本最小化的目標下,解析在不同參數下的最佳經濟生產批量,並提出最佳的檢驗與預防維護策略,且證明執行預防維護會使得總成本減少,以及預防維護的程度也會影響最佳解。
第三種模式則是對於不完美製程考慮不良品可以進行不完美重工製程與允許缺貨存在條件下,發展出一個整合模型。在不完美重工製程中,有一定比例的不良品可以經由重新加工成為良品,另一部份則會成為報廢品。最後亦使用數值分析來模擬不同參數改變對於最佳解的影響,以及在最大總利潤的目標下提出最佳檢驗區間、檢驗次數,與生產批量,並且探討重工製程的利益。
摘要(英) Most manufacturing industries utilize the batch model of production. Therefore, determining the optimal economic production quantity (EPQ) is a relevant inventory management issue. Determining EPQ for manufacturing processes has been extensively studied in the literature. However, changes in the social environment and global economy have affected the total cost structure. Consumers are more concerned than before about product quality and manufacturing equipments has improved. While thinking about minimal total cost, other important considerations are product inspection, maintenance of equipments, non-conforming products and related costs of implementing EPQ strategy for more practical situations.
The imperfect process has a general deterioration distribution with increasing hazard rate. Even with periodic preventive maintenance, such a production system can not be recovered as good as new. This means that the system condition depends on how long it runs. Also, the PM level can be distinct due to the maintenance cost. This research develops integrated models and explores the influence on the total production cost of three production conditions in considering the situations of an imperfect process with imperfect maintenance for the joint determination of economic production quantity (EPQ), inspection and preventive maintenance.
The first takes minimal repair and inspection time into consideration to develop an integrated model. The second extends the first model to consider inspection errors and preventive maintenance error due to human or technological limitations. And implementing the model to use Weibull shock model as an example conducts numerical analysis. In the goal of minimal expected total cost, this research analyzes the optimal EPQ in various conditions to propose the optimal strategy of inspection and PM, and to prove that performing PM makes the reduction of total cost.
The third develops an integrated model in considering the situations of an imperfect process with shortage, and an imperfect rework process for non-conforming items. There is a percentage of the reworking items fail the repairing and become scrap items in the imperfect rework process. We use numerical analyses to simulate the effect of changes in the various parameters on the optimal solution. And look at the optimal inspection interval, inspection frequency and production quantity that maximum total profit which the advantages of rework process were explored.
關鍵字(中) ★ 整合模型
★ 檢驗
★ 預防保養
★ 不完美製程
★ 經濟生產批量
關鍵字(英) ★ integrated model
★ inspection
★ preventive maintenance
★ Economic production quantity
★ imperfect process
論文目次 中文摘要…………………………………………………………… I
Abstract……...........................................II
Acknowledgments……………………………………………………III
Table of Contents……….……….........................IV
List of Figures…………………………………………………….VI
List of Tables……......................................VII
Notations……………………………………………………………VIII
Chapter 1 Introduction…………………………………………..1
1.1 Motivation and Objectives………………………………….1
1.2 Scope of the Study…………………………………………..4
Chapter 2 Literature Review.............................7
2.1 Imperfect Production System.........................7
2.2 Inspection Integration..............................8
2.2 Imperfect Maintenance..............................10
2.3 Rework.............................................12
Chapter 3 An Optimal Production Lot-sizing Problem with Minimal Repair and Inspection Time Length………........14
3.1 Introduction………………………………………….......14
3.2 Production System Assumptions and Notation…….....15
3.3 The Construction of an Integration Model…………….16
3.3.1 Inventory Holding Cost……………………….........18
3.3.2 Preventive Maintenance Cost and Inspection Cost…20
3.3.3 Non-conforming Item Cost.........................22
3.3.4 Restoration Cost.................................23
3.4 A Solution Procedure...............................25
3.5 Numerical Examples.................................27
Chapter 4 Optimal Production and Inspection Strategy with Inspection Errors and Imperfect maintenance............32
4.1 Introduction.......................................32
4.2 Production System Definition and Assumptions.......33
4.3 Model Formulation..................................35
4.3.1 The Inventory Holding Cost.......................36
4.3.2 The Maintenance Cost and Inspection Cost.........38
4.3.3 The Non-conforming Item Cost.....................40
4.3.4 The Restoration Cost.............................41
4.4 Solution Procedure.................................42
4.5 Numerical Examples.................................45
Chapter 5 Economic Optimization for an Imperfect Production System with Rework and Scrap Rate...........51
5.1 Introduction.......................................51
5.2 Production System Assumptions and Notation.........52
5.3 The Construction of a Profit Model.................54
5.3.1 The Inventory Holding Cost and Shortage Cost.....56
5.3.2 The Reworking Cost and Disposal Cost.............57
5.3.3 The Preventive Maintenance Cost and Inspection
Cost.............................................58
5.3.4 The Restoration Cost.............................60
5.4 Solution Procedure.................................61
5.5 Numerical Analyses.................................64
Chapter 6 Conclusions and Future Research..............70
6.1 Conclusions........................................70
6.2 Future Research....................................72
References.............................................73
參考文獻 1.Agnihothri, S.R. and Kenett, R.S., 1995. The impact of defects on a process with rework, European Journal of Operational Research, 80, 308-327.
2.Aghezzaf, E.H., Jamali, M.A. and Ait-Kadi, D., 2007. An integrated production and preventive maintenance planning model, European Journal of Operational Research, 181, 679–685.
3.Banerjee, P.K. and Rahim, M.A., 1988. Economic design of x-bar chart under weibull shock models, Technometrics, 30, 407-414.
4.Ben-Daya, M. and Makhdoum, M., 1998. Integrated production and quality model under various preventive maintenance policies, Journal of the Operational Research Society, 49, 840-853.
5.Ben-Daya, M., 1999. Integrated production maintenance and quality model using the imperfect maintenance concept, IIE Transactions, 31(6), 491-501.
6.Ben-Daya, M., 2002. The economic production lot-sizing problem with imperfect production process and imperfect maintenance, International Journal of Production Economics, 76(3), 257-264.
7.Chern, C.C. and Yang, P., 1999. Determining a threshold control policy for an imperfect production system with rework jobs, Naval Research Logistics, 46, 273-301.
8.Chen, Y.C., 2006. Optimal inspection and economical production quantity strategy for an imperfect production process, International Journal of Systems Science, 37(5), 295-302.
9.Charlot, E., Kenne', J.P., and Nadeau, S., 2007. Optimal production, maintenance and lockout/tagout control policies in manufacturing systems, International Journal of Production Economics, 107 (2), 435–450.
10.Chiu, S.W., Ting, C.K., and Chiu, Peter Y.S., 2007. Optimal production lot sizing with rework, scrap rate, and service level constraint, Mathematical and Computer Modelling, 46, 535-549.
11.Chiu, Y.P., 2003. Determining the optimal lot size for the finite production model with random defective rate, the rework process, and backlogging, Engineering Optimization, 35, 427-437.
12.Darwish, M.A., 2006. Imperfect production systems with imperfect preventive maintenance, inflation, and time value of money, Asia-pacific Journal of Operational Research, 23(1), 89-105.
13.Darwish, M.A. and Ben-Daya, M., 2007. Effect of inspection errors and preventive maintenance on a two-stage production inventory system, International Journal of Production Economics, 107(1), 301–313.
14.Darwish, M.A., 2008. EPQ models with varying setup costs, International Journal of Production Economics, 113(1), 297–306.
15.Flappera, S.D.P., and Teunterb, R.H., 2004. Logistic planning of rework with deteriorating work-in-process, International Journal of Production Economics, 88 (1), 51–59.
16.Freimer, M., Thomas, D., and Tyworth, J., 2006. The value of setup costs reduction and process improvement for the economic production quantity model with defects, European Journal of Operational Research, 173(1), 241–251.
17.Halim, K. A., Giri, B. C., and Chaudhuri, K. S., 2009. Fuzzy EPQ models for an imperfect production system, International Journal of Systems Science, 40(1), 45-52.
18.Hariga, M. and Ben-Daya, M., 1998. Note: the economic manufacturing lot-sizing problem with imperfect production process: bounds and optimal solutions, Naval Research Logistics , 45, 423-432.
19.Hayek, P.A. and Salameh, M.K., 2001. Production lot sizing with the reworking of imperfect quality items produced, Production Planning & Control, 12, 584-590.
20.Hooke, R. and Jeeves, T.A. 1961. Direct search solution of numerical statistical problems, Journal of the Association for Computing Machinery, 8, 212–229.
21.Inderfurth, K., Lindner, G., and Rachaniotis, N.P., 2005. Lot sizing in a production system with rework and product deterioration, International Journal of Production Research, 43(7), 1355-1374.
22.Inderfurth, K., Kovalyov, M.Y., Ng, C.T., and Werner, F., 2007. Cost minimizing scheduling of work and rework processes on a single facility under deterioration of reworkables, International Journal of Production Economics, 105 (2), 345–356.
23.Jaber, M.Y., 2006. Lot sizing for imperfect production process with quality corrective interruptions and improvements, and reduction in setups, Computers and Industrial Engineering, 51(4), 781–790.
24.Lee, H.H., 2008. The investment model in preventive maintenance in multi-level production systems, International Journal of Production Economics, 112 (2), 816–828.
25.Lee, H.L. and Rosenblatt, M.J., 1989. A production and maintenance planning model with restoration cost dependent on detection delay, IIE Transactions, 21(4), 368-375.
26.Lee, H.L., 1992. Lot sizing to reduce capacity utilization in a production process with defective items, process corrections, and rework. Management Science, 38(9), 1992.
27.Liao, G. L., Chen, Y. H., and Sheu, S. H., 2009. Optimal economic production quantity policy for imperfect process with imperfect repair and maintenance, European Journal of Operational Research, 195, 348-357.
28.Lin, T.M., Tseng, S.T., and Liou, M.J., 1991. Optimal inspection schedule in the imperfect production system under general shift distribution, Journal of Chinese Institute of Industrial Engineers, 8(2), 73-81.
29.Lin, C.Y., 2004. Optimization of maintenance, production and inspection strategies while considering preventative maintenance error, Journal of Information and Optimization Sciences, 25, 543-555.
30.Lin, G.C. and Gong, D.C., 2006. On a production-inventory system of deteriorating items subject to random machine breakdowns with a fixed repair time, Mathematical and Computer Modelling, 43, 920-932.
31.Luss, H., and Kander, Z., 1974. Inspection policies when duration of checkings is non-negligible, Operational Research Quarterly, 25(2), 299-309.
32.Oke, S.A., Oluleye, A.E., Oyawale, F.A. and Charles-Owaba, O.E., 2008. Sensitivity analysis of a preventive maintenance scheduling model, International Journal of Industrial and Systems Engineering, 3(3), 298-323.
33.Oke, S.A., Oluleye, A.E., Oyawale, F.A. and Charles-Owaba, O.E., 2008. A facility maintenance scheduling model incorporating opportunity and inflationary costs, International Journal of Industrial and Systems Engineering, 3(4), 423-466
34.Park, K.S., and Yun D.K., 1984. A stepwise partial enumeration algorithm for the economic lot scheduling problem, IIE Transactions, 16(4), 363-370.
35.Porteus, E.L., 1986. Optimal lot sizing, process quality improvement and setup cost Reduction, Operation Research, 34(1), 137-144.
36.Pham, H. and Wang, H., 1996. Imperfect maintenance, European Journal of Operational Research, 94(3), 425-438.
37.Rahim, M.A., 1994. Joint determination of production quantity, inspection schedules and control chart design, IIE Transaction, 26(6), 2-11.
38.Rahim, M.A. and Ben-Daya, M., 1998. A generalized economic model for joint determination of production run, inspection schedule and control chart design, International Journal of Production Research, 36, 277-289.
39.Rahim, M.A. and Ben-Daya, M., 2001. Joint determination of production quantity, inspection schedule, and quality control for an imperfect process with deteriorating product, Journal of the Operational Research Society, 52, 1370-1378.
40.Rahim, M.A. and Ohta, H., 2005. An integrated economic model for inventory and quality control problems, Engineering Optimization, 37(1), 65-81.
41.Rahim, M.A. and Al-Hajailan, W.I., 2006. An optimal production run for an imperfect production process with allowable shortages and time-varying fraction defective rate, The International Journal of Advanced Manufacturing Technology, 27, 1170-1177.
42.Rosenblatt, M.J., and Lee, H.L., 1986. Economic production cycles with imperfect production process, IIE Transactions, 18, 48-55.
43.Ross, S.M., 1992. Applied probability models with optimization applications, Courier Dover Publications, New York.
44.Salameh, M.K., and Jaber, M.Y., 2000. Economic production quantity model for items with imperfect quality, International Journal of Production Economics, 64, 59–64.
45.Silver, E.A. and Peterson, R., 1985. Decision Systems for Inventory Management and Production Planning, John Wiley, New York.
46.Sheu, S.H. and Chen, J.A., 2004. Optimal lot-sizing problem with imperfect maintenance and imperfect production, International Journal of Systems Science, 35 (1), 69-77.
47.Sheu, S.H., Chen, Y.C., and Teng, L.H., 2005. Optimal periodic replacement policy with checking time, International Journal of Reliability, Quality and Safety Engineering, 12 (1), 19-29.
48.Sharma, R.K., Kumar D. and Kumar, P., 2007. Behaviour analysis and resource optimisation for an industrial system, International Journal of Industrial and Systems Engineering, 2(4), 413-443.
49.Tseng, S.T., Yeh, R.H., and Ho, W.T., 1998. Imperfect maintenance for deteriorating production systems, International Journal of Production Economic, 55, 191-201.
50.Wang, C.H. and Sheu, S.H., 2001. Simultaneous determination of the optimal production inventory and product inspection policies for a deteriorating production system, Computers and Operations Research, 28(11), 1093-1110.
51.Wang, C.H., 2005. Integrated production and product inspection policy for a deteriorating production system, International Journal of Production Economics, 95, 123-134.
指導教授 陳振明(Jen-Ming Chen) 審核日期 2009-12-7
推文 facebook   plurk   twitter   funp   google   live   udn   HD   myshare   reddit   netvibes   friend   youpush   delicious   baidu   
網路書籤 Google bookmarks   del.icio.us   hemidemi   myshare   

若有論文相關問題,請聯絡國立中央大學圖書館推廣服務組 TEL:(03)422-7151轉57407,或E-mail聯絡  - 隱私權政策聲明