Research on force demand of multi-layer anti-missile coorperative combat
Junliang Ji, Wang Minle, Wei Li, Jingzhuo Zhang
Abstract
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Junliang Ji, Wang Minle, Wei Li, Jingzhuo Zhang
Abstract
Open-access reader
In order to find a scientific analysis method of anti-missile force demand, the connotation of force demand of multi-layer anti-missile cooperative combat was first defined, and the relative concepts such as combat unit, firepower layer, route shortcut and assault wave were described. Then, an intercept damage model of multi-layer anti-missile coorperative combat was built. And the computing method of anti-missile firepower overlaping demand was proposed, the computing method of minimum acceptable quantity of single firepower layer anti-missile combat unit and the total force demand of multi-layer anti-missile cooperative combat were given based on the studied thinking of force demand. At last, the example of anti-missile combat was set up, which was solved with LINGO software, and it confirmed the rationality of the proposed method and the effect of each anti-missile fire layer.
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In order to find a scientific analysis method of anti-missile force demand, the connotation of force demand of multi-layer anti-missile cooperative combat was first defined, and the relative concepts such as combat unit, firepower layer, route shortcut and assault wave were described. Then, an intercept damage model of multi-layer anti-missile coorperative combat was built. And the computing method of anti-missile firepower overlaping demand was proposed, the computing method of minimum acceptable quantity of single firepower layer anti-missile combat unit and the total force demand of multi-layer anti-missile cooperative combat were given based on the studied thinking of force demand. At last, the example of anti-missile combat was set up, which was solved with LINGO software, and it confirmed the rationality of the proposed method and the effect of each anti-missile fire layer.
Key concepts: Firepower, Missile, Computer science, Layer (electronics), Ballistic missile, Aeronautics, Operations research, Simulation