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Optimizing Long-Lasting Insecticidal Nets Campaign in Ivory Coast

机译:优化象牙海岸的长持久的杀虫网运动

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This research supports the United Nations Children’s Fund’s (UNICEF) conceptualization, planning and implementation of a campaign for distribution of more than 12 million mosquito nets in Ivory Coast. Procured from four different suppliers in Asia, the nets were transported to the two ports in Ivory Coast before being pre-positioned at 71 Health Districts across the country, a mixed integer network flow model identifies optimal transport options. The process of modeling and the model developed in this paper brought a significant understanding of the problem and, consequently, a reduction in the overall procurement and logistics costs. The implications of using mathematical modeling by practitioners as a tool which contributes to solve humanitarian logistics problems are significant. Mathematical models, like linear programming, can greatly support overall decision-making within humanitarian organizations by helping to ensure that limited resources are used in the most cost-effective and efficient manner. However, it is important to ensure consultations with and involvement by on the ground practitioners to ensure developed solutions assessed to fit the operating context before being implemented.
机译:本研究支持联合国儿童和rsquo; S基金和rsquo; s(儿童基金会)概念化,规划和实施象牙海岸中超过1200万蚊帐的分销计划。从亚洲的四个不同供应商采购,网站被运送到象牙海岸的两个港口,然后在全国71个卫生区预先定位,混合整数网络流模型识别最佳运输选项。本文开发的建模和模型的过程带来了对问题的重大理解,从而降低了整体采购和物流成本。从业人员使用数学建模作为有助于解决人道主义物流问题的工具的影响是显着的。数学模型,如线性规划,可以通过帮助以最具成本效益和有效的方式使用有限的资源来极大地支持人道主义组织内的整体决策。但是,重要的是要确保与地面从业者的磋商和参与磋商,以确保在实施之前评估的制定解决方案适合运营情况。

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