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A Robust, Multi-criteria Modeling Approach for Optimizing Aeromedical Evacuation Asset Emplacement

机译:一种优化航空医疗后送资产安置的稳健,多准则建模方法

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摘要

According to current force health protection policy, the U.S. Army's Health Service Support system is designed to maintain a healthy force and to conserve the combat strength of deployed soldiers. Specifically, this system remains particularly effective by employing standardized aeromedical evacuation assets and providing a responsive field-sited medical treatment facility for the wounded soldiers evacuated from the battlefield. Since the beginning of Operation Enduring Freedom, military commanders have faced a significant combinatorial challenge integrating these life-saving yet limited air evacuation assets into a fully-functional, comprehensive system for the entire theatre, which deserves thorough analysis for decision-making.This work describes a robust, multi-criteria decision analysis methodology using a scenario-based, stochastic optimization goal-programming model that U.S. Army medical planners can use as a strategic and tactical aeromedical evacuation asset-planning tool to help bolster and improve the current air evacuation system in Afghanistan. Specifically, this model optimizes over a set of expected scenarios with stochastically-determined casualty locations to emplace the minimum number of helicopters at each medical treatment facility necessary to maximize the coverage of the theatre-wide casualty demand and the probability of meeting that demand, while minimizing the maximal medical treatment facility evacuation site total vulnerability to enemy attack.
机译:根据现行的部队健康保护政策,美国陆军的健康服务支持系统旨在维持一支健康的部队并保留已部署士兵的战斗力。具体而言,该系统通过采用标准化的航空医疗后送资产并为从战场上撤离的受伤士兵提供响应迅速的现场医疗设施,仍然特别有效。自``持久自由行动''开始以来,军事指挥官面临着巨大的组合挑战,将这些救生但数量有限的空中撤离资产整合到整个剧院的功能齐全的综合系统中,值得进行全面的决策分析。描述了一种稳健的,多准则的决策分析方法,该方法使用了基于场景的随机优化目标编程模型,美国陆军医疗计划人员可以将其用作战略和战术航空医疗后送资产规划工具,以帮助加强和改善当前的空中后送系统在阿富汗。具体而言,该模型在具有随机确定伤亡人员位置的一组预期方案上进行了优化,以在每个医疗机构安置最小数量的直升机,以最大程度地覆盖整个剧院的伤亡需求以及满足该需求的可能性,而最大程度地减少医疗机构撤离地点对敌人袭击的总体脆弱性。

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