标题: 紧急救灾物流输配送系统模式构建
Emergency disaster logistics relief model construction
作者: 宋明安
Ming An Sung
许钜秉
Jiuh-Biing Sheu
运输与物流管理学系
关键字: 救灾物流;救灾物资资源分配;紧急物资输配送;模糊聚类;relief distribution;Fuzzy clustering
公开日期: 2004
摘要: 日常生活中的天然灾害,如地震、台风、水灾、干旱等,经常造成人们生命与财产的重大损失。由于资源的质与量皆为有限,危难管理者(emergency managers)必须就有限资源,规划最佳的运用时程与策略,以在最短时间内,将救援物资紧急配送至灾区。而灾害救援行动中物流输配(disaster relief management)的基本问题,系在考量时间因素的情况下,如何使用不同的运输模式,透过不同的运输网络,将各种救援物资从各物资集散中心,顺利的配送至灾区。其中,如何有效地分配与调度物资,以避免浪费或堆置无用,将是决定此配送系统优劣的关键。
本研究所构建之“救灾物流输配送系统”包括前端“物资指派”及后端“物资配送”两个部份,物资指派部分在于如何将所有供给端所提供之物资指派至各区域型配送中心。第二部分探讨资源指派并探讨当灾害发生初期所衍生之供需失衡问题,以数学方法计算出各灾区对于物资配送之权重及其配送之优先顺序。同时我们也采用互动式多阶层规划法在将问题分为两个子问题在决策与运作两层级中其间有交互影响之关系下游每阶段之运作结果将回传至上游以提供下一时阶之规划,进而提升整体系统之最佳化。
Natural disasters which might include earthquakes, typhoons, floods, drought, etc. are part of our life. They have significant devastating effects in terms of human injuries and property damage. Because quantity and quality of the resource are limiting factors, emergency managers do have to find an optimal schedule for assigning resources in time to the affected areas, and the basic underlying logistical problem for disaster relief management is to move a number of different commodities using a number of transportation, from a number of distribution center to one or more affected area over a transportation network in a timely manner ,and how to distribute relief effectively and efficiently is one of the key point.
In this study will propose a relief distribution system decompose into two parts, concentrating goods and materials and dynamic resource allocation, the first part is how to concentrate goods and materials in the shortest time and minimize the fleet size. And at the second part we discuss when concentrated goods and materials are insufficient for demand of affected areas we use fuzzy clustering to obtain the weight of affected area. Simultaneously, we will use interactive multi-level programming method because the decisions inherent in the problem decompose hierarchically into two sub-problems where tactical decisions are made at the top level, and the operation distribution and evacuation are made at the base level. Consistency between the decomposed problems is achieved with an interactive coordination procedure which transfers anticipated information form the base level to improve the top level decisions to optimal performance of the relief distribution system.
URI: http://140.113.39.130/cdrfb3/record/nctu/#GT009236509
http://hdl.handle.net/11536/77237
显示于类别:Thesis


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