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A multi-objective optimization of ballistic and cruise missile fire plans based on damage calculations from missile impacts on an airfield defended by an air defense artillery network

机译:基于导弹对防空火炮网络防御的机场的撞击所造成的破坏计算得出的弹道和巡航导弹射击计划的多目标优化

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This paper presents a new methodology for optimizing missile fire plan parameters in order to maximize the damage caused to an airfield by the impacts of ballistic and cruise missiles that leak through an air defense artillery network using weaponeering calculations. This new methodology models the damage to the airfield runway, fuel infrastructure, and parked aircraft caused by both unitary and submunition warheads carried by the ballistic and cruise missiles. It then uses the airfield damage models paired with an air defense simulation in a multi-objective optimization to find the non-dominated frontier of missile fire plan parameters that inflict the greatest damage to the different parts of the defended airfield. It demonstrates the methodology for three increasingly sized ballistic and cruise missile fire plans.
机译:本文提出了一种用于优化导弹射击计划参数的新方法,以使通过防空火炮网络泄漏的弹道导弹和巡航导弹的撞击使用武器弹射计算对机场造成的损害最大化。这种新方法模拟了弹道导弹和巡航导弹携带的unit弹头和子弹头对飞机场跑道,燃料基础设施和停放的飞机造成的损害。然后,它在多目标优化中将机场损害模型与防空仿真结合使用,以找到对防御空域不同部分造成最大损害的导弹射击计划参数的非支配性边界。它演示了三种规模越来越大的弹道和巡航导弹射击计划的方法。

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