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Estimation of damage probability of combat vehicle components based on modeling and simulation

机译:基于建模与仿真的战斗车辆组件损伤概率估计

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摘要

Many functions are considered for the design of GCV (ground combat vehicles), which are carried out to increase the survivability of GCV from enemy threats. By improving survivability, the interior of the GCV can be protected and the continuity of mission performance can be improved. The vulnerability assessment is calculated from the damage probability of the components of the target. The damage probability of the component is calculated by the damage probability of the sub-components. For the accuracy of the vulnerability assessment, it is important to accurately calculate the damage probability of sub-components. The damage probability of sub-components is usually calculated only by the penetration. However, it is difficult to calculate the exact damage probability by penetration alone. In this study, damage scenarios of sub-components are created and classified according to damage types such as a type of components, hit position, damage cause and result, etc., and damage rule is calculated and the damage probability of the sub-components is calculated. In order to improve the accuracy of the analysis of the shot line, which was used only to identify the penetration, we conducted the shot line analysis for the ricochet and deflection to enhance the accuracy of the vulnerability assessment.
机译:考虑到GCV(接地战车)设计的许多功能,以增加GCV从敌人威胁的生存能力。通过提高生存能力,可以保护GCV的内部,并且可以提高任务性能的连续性。漏洞评估由目标组件的损伤概率计算。通过子组件的损伤概率来计算组件的损伤概率。为了准确性评估,重要的是准确计算子组件的损坏概率。子组分的损伤概率通常仅通过渗透来计算。然而,难以单独通过渗透来计算精确的损伤概率。在该研究中,根据损坏类型(如组件,命中位置,损坏原因等)创建和分类损坏的子组件场景,并计算损坏规则以及子组件的损坏概率计算出来。为了提高仅用于识别渗透的喷射线分析的准确性,我们对Ricochet和偏转进行了喷射线分析,以提高漏洞评估的准确性。

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