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Ground Filtering Algorithms for Airborne LiDAR Data: A Review of Critical Issues

Remote Sensing · 2010 · Vol. 2(3) · pp. 833–860
Xuelian MengNate CurritKaiguang Zhao

Abstract

This paper reviews LiDAR ground filtering algorithms used in the process of creating Digital Elevation Models. We discuss critical issues for the development and application of LiDAR ground filtering algorithms, including filtering procedures for different feature types, and criteria for study site selection, accuracy assessment, and algorithm classification. This review highlights three feature types for which current ground filtering algorithms are suboptimal, and which can be improved upon in future studies: surfaces with rough terrain or discontinuous slope, dense forest areas that laser beams cannot penetrate, and regions with low vegetation that is often ignored by ground filters.

Remote Sensing and LiDAR Applications3D Surveying and Cultural HeritageHydrology and Sediment Transport ProcessesLidarRemote sensingTerrainDigital elevation modelComputer scienceAlgorithmProcess (computing)Feature (linguistics)Elevation (ballistics)Data mining
Citations
566
FWCI
19.25
field-weighted impact
References
100
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100%
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References
A progressive morphological filter for removing nonground measurements from airborne LIDAR data
IEEE Transactions on Geoscience and Remote Sensing · 2003 · 1,000 citations
Snakes: Active contour models
International Journal of Computer Vision · 1988 · 16,976 citations
Machine contouring using minimum curvature
Geophysics · 1974 · 1,147 citations
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