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An improved plane fitting based filtering algorithm for airborne LIDAR data

机译:一种改进的基于平面拟合的机载LIDAR数据滤波算法

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摘要

Due to the strengths and weaknesses of the existing filtering methods, an improved plane fitting algorithm is presented for filtering of airborne LIDAR data in the paper. Firstly, resampled LIDAR data were segmented using region growing method, and the largest connected region was selected as the initial ground area. Secondly, non-ground points in the initial ground area were removed by a slope threshold, which is suitable for the study area. Finally, the ground points were interpolated using Kriging method and the filtering results were gained. The dataset provided by International Society for Photogrammetry and Remote Sensing (ISPRS) was selected as the test data. The influences of different slope thresholds on the filtering results were given after filtering experiments. The result shows that the optimal slope threshold in this area was 0.5 and the overall error rate was only 4.29%. Contrast to the traditional filtering method based on plane fitting, the proposed method is more simple and practical.
机译:鉴于现有滤波方法的优缺点,提出了一种改进的平面拟合算法,对机载LIDAR数据进行滤波。首先,使用区域增长方法对重采样的激光雷达数据进行分割,并选择最大的连接区域作为初始地面区域。其次,将初始地面区域中的非地面点通过适合于研究区域的斜率阈值移除。最后,利用克里格法对地面点进行插值,得到滤波结果。选择国际摄影测量与遥感学会(ISPRS)提供的数据集作为测试数据。通过滤波实验,给出了不同斜率阈值对滤波结果的影响。结果表明,该区域的最佳斜率阈值为0.5,总误差率仅为4.29%。与传统的基于平面拟合的滤波方法相比,该方法更加简单实用。

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