• Journal of Infrared and Millimeter Waves
  • Vol. 36, Issue 6, 749 (2017)
YANG Xue-Bo1、2、*, WANG Cheng1, XI Xiao-Huan1, TIAN Jian-Lin3, NIE Sheng1, and ZHU Xiao-Xiao1、2
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
  • 3[in Chinese]
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    DOI: 10.11972/j.issn.1001-9014.2017.06.019 Cite this Article
    YANG Xue-Bo, WANG Cheng, XI Xiao-Huan, TIAN Jian-Lin, NIE Sheng, ZHU Xiao-Xiao. Wavelet transform of Gaussian progressive decomposition method for full-waveform LiDAR data[J]. Journal of Infrared and Millimeter Waves, 2017, 36(6): 749 Copy Citation Text show less
    References

    [2] Lefsky M A, Cohen W B, Harding D J, et al. LiDAR remote sensing of above-ground biomass in three biomes[J]. Global Ecology & Biogeography. 2002, 11(5): 393-399.

    [3] Gong P, Li Z, Huang H B, et al. ICESat GLAS Data for urban environment monitoring[J]. IEEE Transactions on Geoscience & Remote Sensing. 2011, 49(3): 1158-1172.

    [5] Sun G Q, Ranson K J. Modeling LiDAR returns from forest canopies[J]. Geoscience & Remote Sensing IEEE Transactions on . 2000, 38(6): 2617-2626.

    [6] Ni-Meister W, Strahler A H, Woodcock C E, et al. Modeling the hemispherical scanning, below-canopy LiDAR and vegetation structure characteristics with a geometric-optical and radiative-transfer model[J]. Canadian Journal of Remote Sensing. 2008, 34(S2): S385-S397.

    [7] Ni-Meister W, Jupp D L B, Dubayah R. Modeling LiDAR waveforms in heterogeneous and discrete canopies[J]. IEEE Transactions on Geoscience & Remote Sensing. 2001, 39(9): 1943-1958.

    [8] Wagner W, Ullrich A, Ducic V, et al. Gaussian decomposition and calibration of a novel small-footprint full-waveform digitising airborne laser scanner[J]. ISPRS Journal of Photogrammetry & Remote Sensing. 2006, 60(2): 100-112.

    [9] Chauve A, Mallet C, Bretar F, et al. Processing full-waveform LiDAR data: modelling raw signals[C]. International Archives of Photogrammetry, Remote Sensing and Spatial Information Sciences, 36 (Part 3/W52).2008: 102-107.

    [10] Ma H C, Li Q. Modified EM algorithm and its application to the decomposition of laser scanning waveform data[J]. Journal of Remote Sensing. 2009, 13(1): 35-41.

    [15] Lin Y C, Mills J P, Smithvoysey S, et al. Rigorous pulse detection from full-waveform airborne laser scanning data[J]. International Journal of Remote Sensing. 2010, 31(5):1303-1324.

    [18] SHAO Xue-Guang, CAI Wen-Sheng, SUN Pei-Yan. Determination of the component number in overlapping multicomponent chromatogram using wavelet transform[J]. Chemometrics & Intelligent Laboratory Systems. 1998, 43(1): 147-155.

    [19] JIAO Long, GAO Su-Ya, ZHANG Fang, et al. Quantification of components in overlapping peaks from capillary electrophoresis by using continues wavelet transform method[J]. Talanta. 2008, 75(4):1061-1067.

    [21] Wang C, Tang F X, Li L W, et al. Wavelet analysis for ICESat/GLAS waveform decomposition and its application in average tree height estimation[J]. IEEE Geoscience & Remote Sensing Letters. 2013, 10(1): 115-119.

    [22] Brenner A C, Zwally H J, Bentley C R, et al. Derivation of range and range distributions from laser pulse waveform analysis for surface elevations, roughness, slope, and vegetation heights[J]. Algorithm Theoretical Basis Document v4.1, 2003.

    [23] Madsen K, Nielsen H B,Tingleff O. Methods for nonlinear least squares problems[M]. Denmark: Press of Technical University of Denmark, 2004.

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    YANG Xue-Bo, WANG Cheng, XI Xiao-Huan, TIAN Jian-Lin, NIE Sheng, ZHU Xiao-Xiao. Wavelet transform of Gaussian progressive decomposition method for full-waveform LiDAR data[J]. Journal of Infrared and Millimeter Waves, 2017, 36(6): 749
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