标题: | 整合性供应链绩效评估与最佳化分析 An Analytical Framework for Supply Chain Performance Evaluation and Optimization |
作者: | 王风帆 Fong-Fan Wang 苏朝墩 洪瑞云 Chao-Ton Su Ruey-Yun Horng 工业工程与管理学系 |
关键字: | 整合性供应链;矩阵分析方法;拟生死过程;马可夫调适卜瓦松过程;巨集启发式解法;Integrated stochastic supply chain;Quasi-birth-and-death process;Matrix analytical method;Markov modulated Poisson process;Meta-heuristic method |
公开日期: | 2005 |
摘要: | 本论文以系统整合角度提出多阶物流供应链绩效评估及最佳化模式。一般来说,多阶物流供应链可概分为零物料供应、制造、配销及运输等供应子系统。以往学者在分析类似问题大多零散不完整,且倾向个别求解。例如已知市场需求,希望求解最适制造策略;或是假设配销系统供应无限来求解最适库存水准。本论文假设产品需求及制造环境为随机分配,各供应子系统产能有限,以矩阵分析方法求出在长期稳定状态下此供应链网路系统绩效,即长期稳定作业成本及服务水准。探讨各种可能市场需求及供给不确定因素型式对系统绩效之影响,提出以马可夫调适卜瓦松过程建构在此情况下各供应子系统随机模式,并以矩阵几何方法求解系统绩效。本论文最后运用各种古典及现代寻优理论,配合所提出系统评估模式找出供应最佳库存及产能水准,并考虑上游供货不稳定对系统绩效之影响,配合实例说明以此整合分析及最佳化模式找出不稳定供需环境下最稳健系统资源规划。 An integrated matrix analytic model is proposed to evaluate a multi-echelon supply chain (SC) from a systematic viewpoint. Generally speaking, a multi-echelon supply chain consists of four basic subsystems: raw material supply, production, distribution and transportation. In the past, most of the analyses of complex supply chain models seemed to be fragmented and tended to pursue local analysis. For example, some studies assumed market demands were known and tried to find the most adequate manufacturing strategies. Others assumed that supplies were unlimited and tried to find optimal distribution strategies to fight against demand uncertainty. In the first phase of this study, the market demand and supply process were assumed stochastic. Each SC contributor was then treated as a single server in a tandem queueing network. We developed an integrated matrix analytic model for the steady state performance evaluation in terms of total operating cost and customer service level for a fabricated SC problem. We also took upstream unavailability into the modeling process. Next, we investigated deeply into the impact of supply/demand uncertainties on SC performance. We modeled various uncertainty scenarios as Markov modulated Poisson processes (MMPP). Using matrix geometric method we obtained the steady state performance measures and proposed solution measures for a test SC problem with make-to-order mode. Finally, based on the above-developed SC evaluation model, we investigated various optima seeking procedures. Our objective was to solve the optimal buffer and capacity allocation problems simultaneously such that the chain wide operation cost was minimized under pre-specified service level. Especially, we discussed the impact of unreliable supply on system performance. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT008833816 http://hdl.handle.net/11536/69445 |
显示于类别: | Thesis |
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