A tri-objective, dynamic weapon assignment model for surface-based air defence

ORiON Pub Date : 2016-06-03 DOI:10.5784/32-1-522
DP Lötter, Jh van Vuuren
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引用次数: 4

Abstract

In a military surface-based air defence environment, a fire control officer typically employs a computerised weapon assignment decision support subsystem to aid him in the assignment of available surface-based weapon systems to engage aerial threats in an attempt to protect defended surface assets - a problem known in the military operations research literature as the weapon assignment problem. In this paper, a tri-objective, dynamic weapon assignment model is proposed by modelling the weapon assignment problem as a multi-objective variation of the celebrated vehicle routing problem with time windows. A multi-objective, evolutionary metaheuristic for solving the vehicle routing problem with time windows is used to solve the model. The workability of this modelling approach is illustrated by solving the model in the context of a simulated, surface-based air defence scenario.
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陆基防空的三目标动态武器分配模型
在军事地基防空环境中,火控军官通常使用计算机化武器分配决策支持子系统来帮助他分配可用的地基武器系统,以应对空中威胁,试图保护被防御的水面资产——这是军事作战研究文献中称为武器分配问题的问题。将武器分配问题建模为带时间窗的著名车辆路径问题的多目标变体,提出了一种三目标动态武器分配模型。采用多目标进化元启发式算法求解带时间窗的车辆路径问题。通过在模拟的地面防空场景中求解模型,说明了这种建模方法的可行性。
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