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Decision-making optimization method for submarine attack conditions

机译:潜艇攻击条件的决策优化方法

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As a strategic weapon with strong attack and high concealment, submarine's optimal operational maneuver decision is very important. However, the attack condition model of submarine can not be expressed directly by mathematical formula. This paper presents a method based on fuzzy comprehensive evaluation and multi-objective optimization to obtain the optimal decision of submarine. Firstly, according to FCE, the fuzzy evaluation index system of submarine attack condition is established, and each influencing factor is given a reasonable weight. After the weight of target layer is calculated by membership function, the attack condition of submarine is scored. In addition, this paper also uses simulated annealing algorithm to get the optimal decision of submarine attack condition, so as to get the corresponding subsystem input instructions under the optimal decision. The final simulation results show that this method is an effective method to obtain the optimal decision of submarine attack condition.
机译:作为一种强大的攻击和高隐藏性的战略武器,潜艇的最佳运营机动决策非常重要。然而,潜艇的攻击条件模型不能通过数学公式直接表达。本文介绍了一种基于模糊综合评价和多目标优化的方法,以获得潜艇的最佳决策。首先,根据FCE,建立了潜艇攻击条件的模糊评价指标体系,每种影响因素都是合理的重量。在通过隶属函数计算目标层的重量之后,潜艇的攻击条件得到得分。此外,本文还采用了模拟退火算法来获得潜艇攻击条件的最佳决策,以便在最佳决策下获取相应的子系统输入指令。最终的仿真结果表明,该方法是获得潜艇攻击条件的最佳决策的有效方法。

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