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首页> 外文期刊>SAE International Journal of Materials and Manufacturing >Uncertainty Assessment in Restraint System Optimization for Occupants of Tactical Vehicles
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Uncertainty Assessment in Restraint System Optimization for Occupants of Tactical Vehicles

机译:战术车辆乘员约束系统优化中的不确定性评估

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摘要

We have recently obtained experimental data and used them to develop computational models to quantify occupant impact responses and injury risks for military vehicles during frontal crashes. The number of experimental tests and model runs are however, relatively small due to their high cost. While this is true across the auto industry, it is particularly critical for the Army and other government agencies operating under tight budget constraints. In this study we investigate through statistical simulations how the injury risk varies if a large number of experimental tests were conducted. We show that the injury risk distribution is skewed to the right implying that, although most physical tests result in a small injury risk, there are occasional physical tests for which the injury risk is extremely large. We compute the probabilities of such events and use them to identify optimum design conditions to minimize such probabilities. We also show that the results are robust to various assumptions that the statistical simulations use.
机译:我们最近获得了实验数据,并用它们来开发计算模型来量化正面碰撞期间军人乘员的撞击反应和伤害风险。然而,实验测试和模型运行的数量由于成本高而相对较少。尽管这在整个汽车行业都是如此,但对于在预算紧张的情况下运作的陆军和其他政府机构而言,这一点尤其重要。在这项研究中,我们通过统计模拟研究了在进行大量实验测试后伤害风险如何变化的情况。我们表明,伤害风险分布偏向右侧,这意味着,尽管大多数物理测试导致的伤害风险较小,但偶尔进行的物理测试却会导致极大的伤害风险。我们计算此类事件的概率,并使用它们来确定最佳设计条件以最小化此类概率。我们还表明,该结果对于统计模拟使用的各种假设均具有鲁棒性。

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