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題名 品牌廠商回收及處理分配決策模式
作者 陳蔚華
Chen,Wei Hua
貢獻者 林我聰
陳蔚華
Chen,Wei Hua
關鍵詞 逆物流
隨機規劃
最佳化模式
日期 2011
上傳時間 30-十月-2012 13:59:46 (UTC+8)
摘要 逆物流在過去一直不被受到重視,但是在最近不管是世界各國開始制定法規諸如WEEE、RoHS等以及消費者環保意識的抬頭,都不得不讓企業開始專注在逆物流供應鏈上面,由於逆物流的不確定因素及成本都遠比過去正物流來的複雜,因此,過去企業往往選擇外包給專業第三方逆物流業者來處理。
  然而在過去文獻中指出,其實企業自行建立逆物流供應鏈擁有一些外包得不到的好處,因此,仍然有企業願意自行建立逆物流供應鏈,本研究的目的在於提出一個最佳化模式,此模式利用非線性規劃先將整個研究模式建立成數學模式,再利用隨機規劃方法來將回收量、回收品質及拆解數量這三項不確定因素考慮進去,接著透過情境的方式來表達未來各種可以能發生的情況,再透過非線性隨機規劃模式來去求得一個綜合各種情境的最佳回收處理分配,最後再利用一個手機品牌廠商來做為範例。
參考文獻 1.李惠卿,2008,多處理廠環境下逆物流最適訂單接受量與處理量之研究,國立政治大學資訊管理學系碩士論文。
2.張美香, 賴靜煜, and 薛哲夫 "溫室氣體排放限制下之電力系統容量擴增計畫 A Study of Power System Capacity Expansion under Limitation of Greenhouse Gas Emission,") 2008.
3.楊文正 "廢棄物物流系統規劃之研究," 成功大學工業管理科學系碩博士班學位論文:2005 年) 2005.
4.黃崇奇,2001,求解產銷通路獲利最佳化之探討與比較,國立成功大學工業管理學系碩士論文。
5.Bhuie, A., Ogunseitan, O., Saphores, J. D. M., and Shapiro, A. "Environmental and economic trade-offs in consumer electronic products recycling: a case study of cell phones and computers," IEEE, 2004, pp. 74-79.
6.Butler, R., Ammons, J., and Sokol, J. "A robust optimization model for strategic production and distribution planning for a new product," University of Central Florida, Orlando) 2003.
7.Fleischmann, M., Bloemhof-Ruwaard, J. M., Dekker, R., Van Der Laan, E., Van Nunen, J. A. E. E., and Van Wassenhove, L. N. "Quantitative models for reverse logistics: A review," European Journal of Operational Research (103:1) 1997, pp 1-17.
8.Geyer, R., and Doctori Blass, V. "The economics of cell phone reuse and recycling," The International Journal of Advanced Manufacturing Technology (47:5) 2010, pp 515-525.
9.Hong, I. H., Assavapokee, T., Ammons, J., Boelkins, C., Gilliam, K., Oudit, D., Realff, M. J., Vannícola, J. M., and Wongthatsanekorn, W. "Planning the e-scrap reverse production system under uncertainty in the state of Georgia: A case study," Electronics Packaging Manufacturing, IEEE Transactions on (29:3) 2006, pp 150-162.
10.Ko, H. J., and Evans, G. W. "A genetic algorithm-based heuristic for the dynamic integrated forward/reverse logistics network for 3PLs," Computers & Operations Research (34:2) 2007, pp 346-366.
11.Listeş, O., and Dekker, R. "A stochastic approach to a case study for product recovery network design," European Journal of Operational Research (160:1) 2005, pp 268-287.
12.Louwers, D., Kip, B. J., Peters, E., Souren, F., and Flapper, S. D. P. "A facility location allocation model for reusing carpet materials," Computers & Industrial Engineering (36:4) 1999, pp 855-869.
13.MATTHEW, J. R., Ammons, J. C., and DAVID, J. N. "Robust reverse production system design for carpet recycling," IIE Transactions (36:8) 2004, pp 767-776.
14.Mulvey, J. M., Vanderbei, R. J., and Zenios, S. A. "Robust optimization of large-scale systems," Operations research) 1995, pp 264-281.
15.Pagell, M., Wu, Z., and Murthy, N. N. "The supply chain implications of recycling," Business Horizons (50:2) 2007, pp 133-143.
16.Shih, L. H. "Reverse logistics system planning for recycling electrical appliances and computers in Taiwan," Resources, conservation and recycling (32:1) 2001, pp 55-72.
17.Teunter, R. H., and Flapper, S. D. P. "Optimal core acquisition and remanufacturing policies under uncertain core quality fractions," European Journal of Operational Research (210:2) 2011, pp 241-248.
18.Yu, C. S., and Li, H. L. "A robust optimization model for stochastic logistic problems," International Journal of Production Economics (64:1) 2000, pp 385-397.
描述 碩士
國立政治大學
資訊管理研究所
99356009
100
資料來源 http://thesis.lib.nccu.edu.tw/record/#G0099356009
資料類型 thesis
dc.contributor.advisor 林我聰zh_TW
dc.contributor.author (作者) 陳蔚華zh_TW
dc.contributor.author (作者) Chen,Wei Huaen_US
dc.creator (作者) 陳蔚華zh_TW
dc.creator (作者) Chen,Wei Huaen_US
dc.date (日期) 2011en_US
dc.date.accessioned 30-十月-2012 13:59:46 (UTC+8)-
dc.date.available 30-十月-2012 13:59:46 (UTC+8)-
dc.date.issued (上傳時間) 30-十月-2012 13:59:46 (UTC+8)-
dc.identifier (其他 識別碼) G0099356009en_US
dc.identifier.uri (URI) http://nccur.lib.nccu.edu.tw/handle/140.119/54850-
dc.description (描述) 碩士zh_TW
dc.description (描述) 國立政治大學zh_TW
dc.description (描述) 資訊管理研究所zh_TW
dc.description (描述) 99356009zh_TW
dc.description (描述) 100zh_TW
dc.description.abstract (摘要) 逆物流在過去一直不被受到重視,但是在最近不管是世界各國開始制定法規諸如WEEE、RoHS等以及消費者環保意識的抬頭,都不得不讓企業開始專注在逆物流供應鏈上面,由於逆物流的不確定因素及成本都遠比過去正物流來的複雜,因此,過去企業往往選擇外包給專業第三方逆物流業者來處理。
  然而在過去文獻中指出,其實企業自行建立逆物流供應鏈擁有一些外包得不到的好處,因此,仍然有企業願意自行建立逆物流供應鏈,本研究的目的在於提出一個最佳化模式,此模式利用非線性規劃先將整個研究模式建立成數學模式,再利用隨機規劃方法來將回收量、回收品質及拆解數量這三項不確定因素考慮進去,接著透過情境的方式來表達未來各種可以能發生的情況,再透過非線性隨機規劃模式來去求得一個綜合各種情境的最佳回收處理分配,最後再利用一個手機品牌廠商來做為範例。
zh_TW
dc.description.tableofcontents 壹、 緒論 6
1.1研究背景 6
貳、 文獻探討 8
2.1物流 8
2.2逆物流 9
2.2.1逆物流定義 9
2.2.3逆物流模式 11
2.3逆物流的不確定性 13
2.3.1穩健最佳化 13
2.3.2隨機規劃法 15
2.4 小結 17
參、 模型建立 18
3.1研究流程與步驟 18
3.2研究範圍 20
3.3研究架構 21
3.4基本假設 22
3.5模式符號說明 23
3.6模式說明 25
肆、模式計算與分析 29
4.1、參數設定 30
4.2情境設置說明 35
4.3實驗設計 38
4.4實驗結果與分析 42
伍、結論與未來建議 45
5.1結論與貢獻: 45
5.2研究限制: 45
5.3未來建議: 46
陸、參考文獻 47
zh_TW
dc.language.iso en_US-
dc.source.uri (資料來源) http://thesis.lib.nccu.edu.tw/record/#G0099356009en_US
dc.subject (關鍵詞) 逆物流zh_TW
dc.subject (關鍵詞) 隨機規劃zh_TW
dc.subject (關鍵詞) 最佳化模式zh_TW
dc.title (題名) 品牌廠商回收及處理分配決策模式zh_TW
dc.type (資料類型) thesisen
dc.relation.reference (參考文獻) 1.李惠卿,2008,多處理廠環境下逆物流最適訂單接受量與處理量之研究,國立政治大學資訊管理學系碩士論文。
2.張美香, 賴靜煜, and 薛哲夫 "溫室氣體排放限制下之電力系統容量擴增計畫 A Study of Power System Capacity Expansion under Limitation of Greenhouse Gas Emission,") 2008.
3.楊文正 "廢棄物物流系統規劃之研究," 成功大學工業管理科學系碩博士班學位論文:2005 年) 2005.
4.黃崇奇,2001,求解產銷通路獲利最佳化之探討與比較,國立成功大學工業管理學系碩士論文。
5.Bhuie, A., Ogunseitan, O., Saphores, J. D. M., and Shapiro, A. "Environmental and economic trade-offs in consumer electronic products recycling: a case study of cell phones and computers," IEEE, 2004, pp. 74-79.
6.Butler, R., Ammons, J., and Sokol, J. "A robust optimization model for strategic production and distribution planning for a new product," University of Central Florida, Orlando) 2003.
7.Fleischmann, M., Bloemhof-Ruwaard, J. M., Dekker, R., Van Der Laan, E., Van Nunen, J. A. E. E., and Van Wassenhove, L. N. "Quantitative models for reverse logistics: A review," European Journal of Operational Research (103:1) 1997, pp 1-17.
8.Geyer, R., and Doctori Blass, V. "The economics of cell phone reuse and recycling," The International Journal of Advanced Manufacturing Technology (47:5) 2010, pp 515-525.
9.Hong, I. H., Assavapokee, T., Ammons, J., Boelkins, C., Gilliam, K., Oudit, D., Realff, M. J., Vannícola, J. M., and Wongthatsanekorn, W. "Planning the e-scrap reverse production system under uncertainty in the state of Georgia: A case study," Electronics Packaging Manufacturing, IEEE Transactions on (29:3) 2006, pp 150-162.
10.Ko, H. J., and Evans, G. W. "A genetic algorithm-based heuristic for the dynamic integrated forward/reverse logistics network for 3PLs," Computers & Operations Research (34:2) 2007, pp 346-366.
11.Listeş, O., and Dekker, R. "A stochastic approach to a case study for product recovery network design," European Journal of Operational Research (160:1) 2005, pp 268-287.
12.Louwers, D., Kip, B. J., Peters, E., Souren, F., and Flapper, S. D. P. "A facility location allocation model for reusing carpet materials," Computers & Industrial Engineering (36:4) 1999, pp 855-869.
13.MATTHEW, J. R., Ammons, J. C., and DAVID, J. N. "Robust reverse production system design for carpet recycling," IIE Transactions (36:8) 2004, pp 767-776.
14.Mulvey, J. M., Vanderbei, R. J., and Zenios, S. A. "Robust optimization of large-scale systems," Operations research) 1995, pp 264-281.
15.Pagell, M., Wu, Z., and Murthy, N. N. "The supply chain implications of recycling," Business Horizons (50:2) 2007, pp 133-143.
16.Shih, L. H. "Reverse logistics system planning for recycling electrical appliances and computers in Taiwan," Resources, conservation and recycling (32:1) 2001, pp 55-72.
17.Teunter, R. H., and Flapper, S. D. P. "Optimal core acquisition and remanufacturing policies under uncertain core quality fractions," European Journal of Operational Research (210:2) 2011, pp 241-248.
18.Yu, C. S., and Li, H. L. "A robust optimization model for stochastic logistic problems," International Journal of Production Economics (64:1) 2000, pp 385-397.
zh_TW