考虑电池消耗和速度约束的常规潜艇规避效应建模与仿真

Kai Zhan, Jing Wang
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引用次数: 1

摘要

反潜战是在瞬间暴露潜艇位置后对其进行搜索和重新定位的问题。常规潜艇在潜航时依靠电池运行,潜艇的躲避效果不仅受到潜艇最高航速的制约,还受到潜艇电池能量的制约。常规潜艇的逃逸速度和能量是两个重要的约束条件。在分析典型反潜作战模型和过程的基础上,应用博弈论研究了潜艇速度和电池能量约束下的潜艇躲避效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modeling and Simulation of the Conventional Submarine Evasion Effect with the Constraint on Battery Consumption and Speed
Anti submarine warfare is the problem of searching and relocating the submarine after momentarily revealing its position. The conventional submarines run on its batteries when submerged and the submarine's evasion effect is constrainted with not only its top speed but also its battery energy. The conventional submarine's velocity and energy are two important constrained conditions in escaping. With analyzing the typical anti-submarine warfare model and process, the Game Theory is applied in researching the submarine evasion effect constrained by the submarine's velocity and battery energy.
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