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The Maximal Cover Location Model with Hedging: Siting Facilities under Uncertainty, a Lead Poisoning Screening Network for the Dominican Republic

机译:带套期保值的最大掩护地点模型:不确定的选址设施,多米尼加共和国的铅中毒筛查网络

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The maximal covering location problem (MCLP) model and the large number of applications and modifications that have emanated from it have been extensively used to site facility networks in a wide variety of applications. In this article, we formulate and apply an extension of MCLP, the Maximal Covering Location Problem with Hedging (MCLPH), to address the problem of siting facilities when the demand for service from those facilities is uncertain. The MCLPH model treats the maximal cover of different potential demand populations in the system as different objectives for the MCLP, with some lexicographic ordering of objectives related to the degree of uncertainty about the sizes and spatial pattern of those demands. We apply the MCLPH model to the problem of designing a medical network of screening facilities for people who may have been exposed to lead contamination in the Dominican Republic (DR). In the DR, there are three suspected sources of lead contamination, waterborne lead from runoff as a result of gold mining activities, airborne lead contamination from the emissions of a battery recycling plant, and airborne lead from the use of leaded gasoline in transportation. The geographical patterns of contamination from these three sources are different and therefore, the populations of the cities and towns in the DR can be expected to be differentially exposed depending upon which is the actual source of the lead. A geographical information system-based hazard analysis is used to provide input data to the MCLPH and to display and evaluate the resulting facility location patterns.
机译:最大覆盖位置问题(MCLP)模型以及由此产生的大量应用和修改已广泛用于各种应用中的设施网络。在本文中,我们制定并应用MCLP的扩展,即对冲的最大覆盖位置问题(MCLPH),以解决那些设施的服务需求不确定时的选址设施问题。 MCLPH模型将系统中不同潜在需求总体的最大覆盖率视作MCLP的不同目标,并按与这些需求的大小和空间模式有关的不确定性程度对目标进行了字典编排。我们将MCLPH模型应用于为多米尼加共和国(DR)可能暴露于铅污染的人们设计筛查设施的医疗网络的问题。在灾难恢复中,存在三种可疑的铅污染源:金矿开采活动产生的径流中的水溶铅,电池回收厂排放的空气中的铅污染以及运输中使用含铅汽油的空气中的铅。这三种污染源的地理分布方式是不同的,因此,DR中城镇居民的暴露程度可能会有所不同,具体取决于铅的实际来源。基于地理信息系统的危害分析用于向MCLPH提供输入数据,并显示和评估最终的设施位置模式。

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