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Reconstructing 3D CAD Models for Simulation Using Imaging-Based Reverse Engineering

机译:使用基于成像的逆向工程重建3D CAD模型以进行仿真

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The purpose of this research is to investigate imaging-based methods to reconstruct 3D CAD models of real-world objects. The methodology uses structured lighting technologies such as coded-pattern projection and laser-based triangulation to sample 3D points on the surfaces of objects and then to reconstruct these surfaces from the dense point samples. This reverse engineering (RE) research presents reconstruction results for a military tire that is important to tire-soil simulations. The limitations of this approach are the current level of accuracy that imaging-based systems offer relative to more traditional CMM modeling systems. The benefit however is the potential for denser point samples and increased scanning speeds of objects, and with time, the imaging technologies should continue to improve to compete with CMM accuracy. This approach to RE should lead to high fidelity models of manufactured and prototyped components for comparison to the original CAD models and for simulation analysis. We focus this paper on the data collection and view registration problems within the RE pipeline.
机译:这项研究的目的是研究基于图像的方法来重建现实世界对象的3D CAD模型。该方法使用结构化照明技术,例如编码模式投影和基于激光的三角测量,以对对象表面上的3D点进行采样,然后从密集点采样中重建这些表面。这项逆向工程(RE)研究提出了军用轮胎的重建结果,这对轮胎-土壤模拟非常重要。这种方法的局限性在于,基于影像的系统相对于更传统的CMM建模系统而言,目前的准确性水平。但是,这样做的好处是有可能获得更密集的点样本并提高对象的扫描速度,并且随着时间的流逝,成像技术应继续改进以与CMM精度竞争。这种用于RE的方法应导致制造和原型部件的高保真度模型,以便与原始CAD模型进行比较并进行仿真分析。我们将本文重点放在数据收集上,并查看RE管道中的注册问题。

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