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A COMPREHENSIVE METRIC FOR COMPARING TIME HISTORIES IN VALIDATION OF SIMULATION MODELS WITH EMPHASIS ON VEHICLE SAFETY APPLICATIONS

机译:一种全面的度量,用于比较模拟模型验证时间历史的重点,重点是车辆安全应用

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Computer modeling and simulation are the cornerstones of product design and development in the automotive industry. Computer-aided engineering tools have improved to the extent that virtual testing may lead to significant reduction in prototype building and testing of vehicle designs. In order to make this a reality, we need to assess our confidence in the predictive capabilities of simulation models. As a first step in this direction, this paper deals with developing a metric to compare time histories that are outputs of simulation models to time histories from experimental tests with emphasis on vehicle safety applications. We focus on quantifying discrepancy between time histories as the latter constitute the predominant form of responses of interest in vehicle safety considerations. First we evaluate popular measures used to quantify discrepancy between time histories in fields such as statistics, computational mechanics, signal processing, and data mining. Then we propose a structured combination of some of these measures and define a comprehensive metric that encapsulates the important aspects of time history comparison. The new metric classifies error components associated with three physically meaningful characteristics (phase, magnitude and topology), and utilizes norms, cross-correlation measures and algorithms such as dynamic time warping to quantify discrepancies. Two case studies demonstrate that the proposed metric seems to be more consistent than existing metrics. It is also shown how the metric can be used in conjunction with ratings from subject matter experts to build regression-based val- idation models.
机译:计算机建模和仿真是汽车行业产品设计与开发的基石。计算机辅助工程工具有所改进,在虚拟测试可能导致原型建筑和车辆设计测试的显着减少程度。为了使这一现实,我们需要评估我们对模拟模型的预测功能的信心。作为朝第一步的第一步,本文涉及开发度量,以比较仿真模型输出的时间历史,从实验测试中强调车辆安全应用的实验测试。我们专注于量化时间历史之间的差异,因为后者构成了车辆安全考虑因素的兴趣响应的主要形式。首先,我们评估用于量化在诸如统计,计算力学,信号处理和数据挖掘等领域的时间历史之间的差异的流行措施。然后,我们提出了一些这些措施的结构化组合,并定义了封装时间历史比较的重要方面的全面的指标。新的度量分类与三个物理有意义的特征(相位,级别和拓扑)相关联的错误组件,并利用规范,互相关测量和算法,例如动态时间扭曲以量化差异。两种案例研究表明,所提出的度量似乎比现有度量更加符合。还示出了如何与来自主题专家的额定值结合使用的标准来构建基于回归的Val Idation模型。

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