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Point Cloud Denoising Processing Technology for Complex Terrain Debris Flow Gully

机译:点云去噪处理技术,复杂地形碎片流动沟壑

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Ground 3D laser point cloud denoising processing is the key to realize terrain 3D modeling of debris flow ditch. Most point cloud denoising methods have poor effect on the complex terrain, do not ideally preserve the terrain features either. This study put forward a point cloud denoising processing method based on terrain feature refinement. Firstly, based on the relief amplitude and slope information reflected by the original point cloud, the terrain niche index model was established, and the natural discontinuity method was used to block the point cloud in the experimental area. Secondly, a multi-scale virtual grid was constructed based on the terrain and vegetation growth of each block to extract more accurate initial ground points, and the initial terrain surface was constructed based on these points. Finally, a set of ground point judgment parameters is determined, and the ground point is extracted in combination with the initial terrain surface, to realize the denoising processing of the debris flow valley point cloud. The results quality is assessed with the traditional triangulated irregular network denoising processing method. The analysis results show that the denoising method based on terrain feature refinement not only improve the quality of point cloud denoising and effectively remove the vegetation with different height characteristics under different slope environments in the debris flow valley, but also keep the terrain structure features very well.
机译:地面三维激光点云降噪处理是实现地形泥石流沟的三维建模的关键。大多数的点云去噪方法对复杂地形效果差,不理想的保存地形特征要么。这项研究提出了点云去噪处理方法根据地形特点细化。首先,基于由所述原始点云反射的浮雕幅度和斜率信息,所述地形位指数模型建立,并使用自然不连续方法来阻止在实验区中的点云。其次,多尺度虚拟网格是基于每个块的地形和植被生长到提取更精确的初始地面点构成,并且基于这些点,构建初始地形表面。最后,一组地面点判断参数被确定,并且在组合所述地面点提取与初始地形表面,以实现泥石流谷点云的降噪处理。结果质量评估与传统的不规则三角网降噪处理方法。分析结果表明,基于地形特征细化不仅去噪方法提高点云去噪的质量和有效去除与下的泥石流河谷不同坡度的环境不同高度的特征植被,而且还保持地势结构特点非常好。

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