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Optimization of combat logistics force required to support major combat operations

机译:优化支持主要作战行动的作战后勤力量

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摘要

Military requirements development involves operational commanders conducting analyses of a variety of combat scenarios to assess force structure and material requirements to meet their military objectives. The naval component of each command determines the number of Combat Logistics Force (CLF) ships necessary to keep combatant vessels on station. Without sufficient CLF ships, naval forces are unable to sustain continued presence in theater, hampering their ability to support combat operations. Current practice uses spreadsheet-based average consumption models to estimate the CLF requirement. However, these models do not adequately account for surges in demand or coordination of shuttle ships between multiple battle groups. This thesis demonstrates an optimization model coupled with a spreadsheet interface to identify CLF requirements for campaign level analysis through the use of a fictional 60-day combat scenario. We determine that resupply port location is a key determinant of shuttle ship quantity and employment. We also demonstrate an all-shuttle-ship concept that eliminates the need for station ships and further reduces the number of CLF ships necessary to support the mission.
机译:军事需求的制定涉及作战指挥官对各种作战情景进行分析,以评估部队结构和物质需求,以实现其军事目标。每个司令部的海军部门确定将作战舰队保持在驻地所需的作战后勤部队(CLF)舰船数量。如果没有足够的CLF舰艇,海军部队将无法维持在战区的持续存在,从而阻碍了其支持作战行动的能力。当前的实践使用基于电子表格的平均消耗模型来估计CLF需求。但是,这些模型不能充分考虑需求激增或多个战斗小组之间穿梭舰的协调性。本文演示了一种优化模型,该模型与电子表格界面相结合,可通过使用虚构的60天战斗场景来识别CLF,以进行战役级分析。我们确定补给港口的位置是决定穿梭船数量和就业的关键因素。我们还展示了全穿梭船的概念,该概念消除了对驻地舰船的需求,并进一步减少了支持任务所需的CLF舰船的数量。

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    Morse Troy C.;

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  • 年度 2008
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