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研究生: 林駿甫
Chun-Fu Lin
論文名稱: 在價格敏感需求模式下考慮產品再製的閉環式供應鏈存貨系統之最佳策略
Optimal policies for the closed-loop supply chain inventory systems with product remanufacturing under price-sensitive demand consideration
指導教授: 陳正綱
Cheng-Kang Chen
口試委員: 葉瑞徽
none
洪大為
none
學位類別: 碩士
Master
系所名稱: 管理學院 - 資訊管理系
Department of Information Management
論文出版年: 2010
畢業學年度: 98
語文別: 英文
論文頁數: 36
中文關鍵詞: 閉環式供應鏈存貨回收商製造再製造價格敏感需求函數
外文關鍵詞: Closed-Loop Supply Chain, Inventory, Collector, Manufacturing, Remanufacturing, Price-Sensitive Demand
相關次數: 點閱:379下載:7
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在此篇論文內,我們在包含了製造商、回收商及消費者的閉環式供應鏈模型中發展了一個存貨系統。我們在包含了Stackelberg game和整合供應鏈兩種不同競爭模式的賽局理論基礎上進行研究。此外,對於製造商的製造策略,我們討論了兩種情況,其一為逐批製造策略,另一個為非逐批製造策略。我們使用數學模式將此模型描述成最大化利潤的問題,並且提供了閉合形式解以及演算法來解答這些問題。最後我們提供了一些數值例子來闡述此問題的特色。


In this paper, we develop inventory models for a closed-loop supply chain system, which consists of a manufacturer, a collector and public consumers. We investigate our problems under the basis of game theory, which consists of two cases: Stackelberg game and centralized collaboration. Furthermore, two production policies for the manufacturer are discussed, one is “lot-for-lot policy” and the other is “not-lot-for-lot policy”. We mathematically formulate our models as profit maximization problems, and the problems are solved either by providing closed form solutions or by developing algorithms to find the optional solution. Finally, we present some numerical examples to illustrate the features of our models.

致 謝…………………………………………………………..……………………..I 摘 要…………………………………………………………..…………………….II Abstract………………………………………………………………………………III TABLE OF CONTENTS…………………………………………………………….IV LIST OF FIGURES………………………………………………………………….VI LIST OF TABLES…………………………………………………………………..VII Chapter 1. Introduction………………………………………………………………..1 Chapter 2. Literature Review……………..…………………………………………...3 Chapter 3. Model Description…………………………………………………………5 3.1 Assumptions………………………………………………………………….5 3.2 Notation………………………………………………………………………6 3.3 Description……………………………………………………………….......7 Chapter 4. Mathematical Formulation (lot-for-lot policy)…….………………………9 4.1 Decentralized model with lot-for-lot policy.......………………….……….....9 4.1.1 Mathematical formulation for the collector……………………….......9 4.1.2 Mathematical formulation for the manufacturer………………….....11 4.2 Centralized model with lot-for-lot policy…………………………………...16 4.3 The comparative results…………………………………………………......18 4.4 Numerical example (lot-for-lot policy)……………………………………..20 Chapter 5. Mathematical Formulation (not-lot-for-lot policy)…….………..……..…21 5.1 Decentralized model with not-lot-for-lot policy.......……..……….………...21 5.2 Centralized model with not-lot-for-lot policy…………….………………...27 5.3 Numerical example (not-lot-for-lot policy)………………………..………..30 Chapter 6. Conclusion and Future Work…………………………………………......33 References……………………………………………………………………………34

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