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Cost estimation of custom hoses from STL files and CAD drawings

机译:根据STL文件和CAD图纸估算定制软管的成本

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摘要

We present a method for the cost estimation of custom hoses from CAD models. They can come in two formats, which are easy to generate: a STL file or the image of a CAD drawing showing several orthogonal projections. The challenges in either cases are, first, to obtain from them a high level 3D description of the shape, and second, to learn a regression function for the prediction of the manufacturing time, based on geometric features of the reconstructed shape. The chosen description is the 3D line along the medial axis of the tube and the diameter of the circular sections along it. In order to extract it from STL files, we have adapted RANSAC, a robust parametric fitting algorithm. As for CAD drawing images, we propose a new technique for 3D reconstruction from data entered on any number of orthogonal projections. The regression function is a Gaussian process, which does not constrain the function to adopt any specific form and is governed by just two parameters. We assess the accuracy of the manufacturing time estimation by fc-fold cross validation on 171 STL file models for which the time is provided by an expert. The results show the feasibility of the method, whereby the relative error for 80% of the testing samples is below 15%.
机译:我们提出了一种从CAD模型估算定制软管成本的方法。它们可以采用两种格式,易于生成:STL文件或显示几个正交投影的CAD图的图像。在这两种情况下的挑战都是,首先要从中获得形状的高级3D描述,其次,要基于重构形状的几何特征来学习用于预测制造时间的回归函数。选择的描述是沿管子中轴的3D线和沿管子的圆形截面的直径。为了从STL文件中提取它,我们改编了RANSAC,这是一种可靠的参数拟合算法。对于CAD绘图图像,我们提出了一种新技术,可以根据在任意数量的正交投影上输入的数据进行3D重建。回归函数是高斯过程,它不限制函数采用任何特定形式,并且仅由两个参数控制。我们通过对171 STL文件模型进行fc倍交叉验证来评估制造时间估计的准确性,该模型的时间由专家提供。结果显示了该方法的可行性,其中80%的测试样品的相对误差低于15%。

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