Journal of Infrared and Millimeter Waves, Volume. 42, Issue 2, 250(2023)
Spaceborne photon counting lidar point cloud denoising method with the adaptive mountain slope
[1] Sawruk N, Burns P, Edwards R et al. Flight lasers transmitter development for Nasa Ice Topography Icesat-2 space mission[C](2018).
[2] Moussavi M S, Abdalati W, Scambos T et al. Applicability of an automatic surface detection approach to micro-pulse photon-counting lidar altimetry data: implications for canopy height retrieval from future ICESat-2 data[J]. INT. J. Remote Sens, 35, 5263-5279(2014).
[3] Ma Y, Xu N, Liu Z et al. Satellite-derived bathymetry using the ICESat-2 lidar and Sentinel-2 imagery datasets[J]. Remote Sens. Environ, 250, 112047(2020).
[4] Narine L L, Popescu S C, Malambo L. Using ICESat-2 to estimate and map forest aboveground biomass: A first example[J]. Remote Sens-Basel, 12, 1824(2020).
[5] Liu X, Su Y, Hu T et al. Neural network guided interpolation for mapping canopy height of China's forests by integrating GEDI and ICESat-2 data[J]. Remote Sens. Environ, 269, 112844(2022).
[6] CHEN Bo-Wei. Photon Counting LiDAR Data Processing and Forest Parameters Estimation[D](2019).
[7] ZHU Xiao-Xiao. Forest height retrieval of china with a resolution of 30 m using ICESat-2 and GEDI data[D](2021).
[8] Smith B, Fricker H A, Gardner A S et al. Pervasive ice sheet mass loss reflects competing ocean and atmosphere processes[J]. Science, 368, 1239-1242(2020).
[9] Smith B, Fricker H A, Holschuh N et al. Land ice height-retrieval algorithm for NASA's ICESat-2 photon-counting laser altimeter[J]. Remote Sens. Environ, 233, 111352(2019).
[10] Neuenschwander A, Pitts K. The ATL08 land and vegetation product for the ICESat-2 mission[J]. Remote Sens. Environ, 221, 247-259(2019).
[11] Neuenschwander A L, Magruder L A. Canopy and terrain height retrievals with ICESat-2: A first look[J]. Remote Sens-Basel, 11, 1721(2019).
[12] HUANG Jia-Peng. Study on canopy height estimation based on ICESat-2/ATLAS photon counting LIDAR data[D](2021).
[13] Chen B, Pang Y, Li Z et al. Ground and top of canopy extraction from photon-counting LiDAR data using local outlier factor with ellipse searching area[J]. IEEE Geosci. Remote S, 16, 1447-1451(2019).
[14] WEI Shuo, ZHAO Nan-Xiang, LI Ming-Le et al. Single photon denoising algorithm combined with improved DBSCAN and statistical filtering[J]. LaseR Technology, 5, 45(2021).
[15] Zhu X, Nie S, Wang C et al. A noise removal algorithm based on OPTICS for photon-counting LiDAR data[J]. IEEE Geosci Remote S, PP(2020).
[16] Magruder L A, Wharton M, Stout K D et al. Noise filtering techniques for photon-counting LADAR data[J]. Proceedings of SPIE - The International Society for Optical Engineering, 8379, 24(2012).
[17] Zhu X, Nie S, Wang C et al. A ground elevation and vegetation height retrieval algorithm using micro-pulse photon-counting lidar data[J]. Remote Sens-Basel, 10, 1962(2018).
[18] Smithwick E A H, Turner M G, Metzger K L et al. Variation in NH4+ mineralization and microbial communities with stand age in lodgepole pine (Pinus contorta) forests, Yellowstone National Park (USA)[J]. Soil Biology and Biochemistry, 37, 1546-1559(2005).
[19] QIN Lei. Research on the method of forest canopy height retrieval based on ICESat-2 lidar photon cloud data[D](2020).
[20] National E O N N. Elevation - LiDAR (DP3.30024.001)[Z]. National Ecological Observatory Network (NEON)(2022).
Get Citation
Copy Citation Text
Guang-Hui HE, Hong WANG, Qiang FANG, Yong-An ZHANG, Dan-Lu ZHAO, Ya-Ping ZHANG. Spaceborne photon counting lidar point cloud denoising method with the adaptive mountain slope[J]. Journal of Infrared and Millimeter Waves, 2023, 42(2): 250
Category: Research Articles
Received: Sep. 6, 2022
Accepted: --
Published Online: Jul. 19, 2023
The Author Email: Hong WANG (wanghongee@163.com)