Graph Extraction for Assisting Crash Simulation Data Analysis

Anahita Pakiman, J. Garcke, A. Schumacher
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Abstract

In this work, we establish a method for abstracting information from Computer Aided Engineering (CAE) into graphs. Such graph representations of CAE data can improve design guidelines and support recommendation systems by enabling the comparison of simulations, highlighting unexplored experimental designs, and correlating different designs. We focus on the load-path in crashworthiness analysis, a complex sub-discipline in vehicle design. The load-path is the sequence of parts that absorb most of the energy caused by the impact. To detect the load-path, we generate a directed weighted graph from the CAE data. The vertices represent the vehicle's parts, and the edges are an abstraction of the connectivity of the parts. The edge direction follows the temporal occurrence of the collision, where the edge weights reflect aspects of the energy absorption. We introduce and assess three methods for graph extraction and an additional method for further updating each graph with the sequences of absorption. Based on longest-path calculations, we introduce an automated detection of the load-path, which we analyse for the different graph extraction methods and weights. Finally, we show how our method for the detection of load-paths helps in the classification and labelling of CAE simulations.
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辅助碰撞模拟数据分析的图提取
在这项工作中,我们建立了一种将计算机辅助工程(CAE)中的信息抽象成图的方法。CAE数据的这种图形表示可以通过比较模拟、突出未探索的实验设计和关联不同的设计来改进设计指南和支持推荐系统。耐撞性分析是汽车设计中一个复杂的分支学科,本文主要研究耐撞性分析中的载荷路径。载荷路径是吸收冲击产生的大部分能量的部件的顺序。为了检测载荷路径,我们从CAE数据中生成一个有向加权图。顶点表示车辆的部件,边缘是部件连接的抽象。边缘方向跟随碰撞发生的时间,其中边缘权值反映了能量吸收的各个方面。我们介绍和评估了三种图提取方法,以及一种用吸收序列进一步更新每个图的方法。基于最长路径计算,我们引入了负载路径的自动检测,并对不同的图提取方法和权重进行了分析。最后,我们展示了我们的检测负载路径的方法如何有助于CAE模拟的分类和标记。
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