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Iterative curved surface fitting algorithm using a raster-scanning window

机译:使用光栅扫描窗口的迭代曲面拟合算法

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In this paper, an iterative curved surface fitting method using a small sliding window is first proposed to smooth the original organized point cloud data (PCD) with noise and fluctuation. Samples included in a small sliding window positioned in PCD are successively fitted to a quadratic surface from upper left to lower right using a least squares method. In the iterative process, outliers of samples are asymptotically removed based on an evaluation index. This proposed method allows original PCD to be smoothed keeping its own shape feature. Then, the already developed stereolithography (STL) generator is used to produce triangulated patches from the smoothed PCD. The process allows to reconstruct 3D digital data of a real object written with STL format for reverse engineering from original PCD with noise. The effectiveness and usefulness of the proposed curved surface fitting method are demonstrated through actual smoothing experiments.
机译:在本文中,首先提出了一种使用小滑动窗口的迭代曲面拟合方法,以平滑具有噪声和波动的原始组织点云数据(PCD)。使用最小二乘法,将位于PCD中的小滑动窗口中包含的样品从左上角到右下角依次安装到二次曲面上。在迭代过程中,根据评估指标渐近去除样本的异常值。该提议的方法允许原始PCD保持其自身的形状特征而变得平滑。然后,已经开发的立体光刻(STL)生成器用于从平滑的PCD生成三角补丁。该过程允许重建带有STL格式的真实对象的3D数字数据,以便从原始PCD进行带噪声的逆向工程。通过实际的平滑实验证明了所提出的曲面拟合方法的有效性和实用性。

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