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An Easy-to-Use Airborne LiDAR Data Filtering Method Based on Cloth Simulation

Remote Sensing · 2016 · Vol. 8(6) · pp. 501–501
Wuming ZhangJianbo QiPeng WanHongtao WangDonghui XieXiaoyan WangGuangjian Yan

Abstract

Separating point clouds into ground and non-ground measurements is an essential step to generate digital terrain models (DTMs) from airborne LiDAR (light detection and ranging) data. However, most filtering algorithms need to carefully set up a number of complicated parameters to achieve high accuracy. In this paper, we present a new filtering method which only needs a few easy-to-set integer and Boolean parameters. Within the proposed approach, a LiDAR point cloud is inverted, and then a rigid cloth is used to cover the inverted surface. By analyzing the interactions between the cloth nodes and the corresponding LiDAR points, the locations of the cloth nodes can be determined to generate an approximation of the ground surface. Finally, the ground points can be extracted from the LiDAR point cloud by comparing the original LiDAR points and the generated surface. Benchmark datasets provided by ISPRS (International Society for Photogrammetry and Remote Sensing) working Group III/3 are used to validate the proposed filtering method, and the experimental results yield an average total error of 4.58%, which is comparable with most of the state-of-the-art filtering algorithms. The proposed easy-to-use filtering method may help the users without much experience to use LiDAR data and related technology in their own applications more easily.

Remote Sensing and LiDAR Applications3D Surveying and Cultural Heritage3D Modeling in Geospatial ApplicationsLidarPoint cloudRangingRemote sensingComputer scienceTerrainDigital surfacePhotogrammetryBenchmark (surveying)Data set

Funding

  • National Natural Science Foundation of China
  • National Key Research and Development Program of China
Citations
1,425
FWCI
26.66
field-weighted impact
References
33
Percentile
100%
vs. same field & year
Citations per year
References
A progressive morphological filter for removing nonground measurements from airborne LIDAR data
IEEE Transactions on Geoscience and Remote Sensing · 2003 · 1,000 citations
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