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Quantification and Evaluation of Uncertainty in the Mathematical Modelling of a Suspension Strut Using Bayesian Model Validation Approach

机译:贝叶斯模型验证方法悬架支柱数学建模中不确定性的量化与评价

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Mathematical models of a suspension strut such as an aircraft landing gear are utilized by engineers in order to predict its dynamic response under different boundary conditions. The prediction of the dynamic response, for example the external loads, the stress and the strength as well as the maximum compression in the spring-damper component aids engineers in early decision making to ensure its structural reliability under various operational conditions. However, the prediction of the dynamic response is influenced by model uncertainty. As far as the model uncertainty is concerned, the prediction of the dynamic behavior via different mathematical models depends upon various factors such as the model's complexity in terms of the degrees of freedom, material and geometrical assumptions, their boundary conditions and the governing functional relations between the model input and output parameters. The latter can be linear or nonlinear, axiomatic or empiric, time variant or time-invariant. Hence, the uncertainty that arises in the prediction of the dynamic response of the resulting different mathematical models needs to be quantified with suitable validation metrics, especially when the system is under structural risk and failure assessment. In this contribution, the authors utilize the BAYES factor as a validation metric to quantify the model uncertainty of a suspension strut system with similar specifications as actual suspension struts in automotive or aerospace applications for decision making in early design stage.
机译:由工程师使用诸如飞机着陆齿轮的悬架支柱的数学模型,以便在不同的边界条件下预测其动态响应。预测动态响应,例如外部载荷,应力和强度以及早期决策中的弹簧阻尼器部件辅助工程师的最大压缩,以确保其在各种操作条件下的结构可靠性。然而,动态响应的预测受模型不确定性的影响。就模型不确定性而言,通过不同数学模型的动态行为预测取决于各种因素,例如模型在自由度,材料和几何假设,其边界条件和管理功能关系方面的复杂性模型输入和输出参数。后者可以是线性的或非线性,公理或经验,时间变体或时间不变。因此,在预测所得不同数学模型的动态响应中出现的不确定性需要用合适的验证度量来量化,特别是当系统处于结构性风险和故障评估时。在这一贡献中,作者利用贝叶斯因子作为验证度量,以量化具有与汽车或航空航天应用中的实际悬架支柱的悬架支柱系统的模型不确定性,以在早期设计阶段决策制作。

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