THE BROWNIAN BASED APPROACH APPLIED TO A LIMITED SAMPLE SIZE FOR BALLISTIC RESISTANCE EVALUATION: TWO EXPERIMENTAL DATABASES

B. Tahenti, F. Coghe, R. Nasri, B. Lauwens, M. Pirlot
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Abstract

The field of penetration mechanics covers studies related to materials behavior under impact loading. Usually, the assessment of the ballistic resistance makes use of the V50, the bullet impact velocity with 50 percent probability of perforation of the tested target. However, the estimation of the entire curve of the perforation probability is frequently solicited. Recently, a stochastic model based on the Brownian motion concept has been proposed for that goal. The bullet motion within the target was represented as a stochastic differential equation using the bullet deceleration and a diffusion coefficient. In this paper, the maximum likelihood inference is developed for the estimation of the model parameters. This inference is applied to the complete database (581 observations) and a sample of 20 observations. In both cases, the perforation probability curve is consistent with the confidence intervals on the experimental estimations. The obtained results show that the likelihood inference extends the application of this approach to experimental samples with limited size. In addition, the proposed inference technic is applied to a second experimental database of ballistic impacts to validate the applicability of the proposed modelling methodology using the likelihood inference to various impact cases.
基于布朗的方法应用于有限样本量的弹道阻力评估:两个实验数据库
侵彻力学领域涵盖了与材料在冲击载荷下的行为有关的研究。通常,弹道阻力的评估使用V50,即子弹在测试目标穿孔概率为50%的情况下的冲击速度。然而,经常需要估计整个射孔概率曲线。最近,一个基于布朗运动概念的随机模型被提出。利用子弹的减速和扩散系数将子弹在靶内的运动表示为随机微分方程。本文采用极大似然推理方法对模型参数进行估计。这一推断适用于完整的数据库(581个观测值)和20个观测值的样本。在这两种情况下,射孔概率曲线与实验估计的置信区间一致。得到的结果表明,似然推理将该方法的应用范围扩展到了有限大小的实验样本。此外,将所提出的推理技术应用于第二个弹道冲击实验数据库,以验证所提出的建模方法对各种冲击案例的适用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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