• Journal of Infrared and Millimeter Waves
  • Vol. 32, Issue 6, 538 (2013)
LUAN Hai-Jun1、2、*, TIAN Qing-Jiu1、2, GU Xing-Fa3, YU Tao3, and HU Xin-Li3
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
  • 3[in Chinese]
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    DOI: 10.3724/sp.j.1010.2013.00538 Cite this Article
    LUAN Hai-Jun, TIAN Qing-Jiu, GU Xing-Fa, YU Tao, HU Xin-Li. Establishing continuous scaling of NDVI based on fractal theory and GEOEYE-1 image[J]. Journal of Infrared and Millimeter Waves, 2013, 32(6): 538 Copy Citation Text show less
    References

    [1] Liang S L. Numerical experiments on the spatial scaling of land surface albedo and leaf area index [J]. Remote Sens Rev, 2000, 19(1-4): 225-242.

    [2] Jin Z Y, Tian Q J, Chen J M, et al. Spatial scaling between leaf area index maps of different resolutions [J]. J Environ Manage, 2007, 85(3): 628-637.

    [3] Li X W, Wang J D, ALAN S.. Scale effect of Planck's law over nonisothermal blackbody surface [J]. Sci China Ser E, 1999, 42(6): 652-656.

    [4] Chen J M. Spatial scaling of a remotely sensed surface parameter by contexture [J]. Remote Sens Environ, 1999, 69(1): 30-42.

    [5] Zhang R H, Li Z L, Tang X Z, et al. Study of emissivity scaling and relativity of homogeneity of surface temperature [J]. Int J Remote Sens, 2004, 25(1): 245-259.

    [6] Wen J G, Liu Q, Liu Q H, et al. Scale effect and scale correction of land-surface albedo in rugged terrain [J]. Int J Remote Sens, 2009, 30(20): 5397-5420.

    [7] Xu X R, Fan W J, Tao X. The spatial scaling effect of continuous canopy Leaves Area Index retrieved by remote sensing [J]. Sci China Ser D, 2009, 52(3): 393-401.

    [8] Zhang X, Yan G, Li Q, et al. A measuring device for studying scaling of emissivities from sub-pixel to pixel [J]. Int J Remote Sens, 2006, 27: 5359-5372.

    [9] Roman M O, Gatebe C K, Schaaf C B, et al. Variability in surface BRDF at different spatial scales (30~500 m) over a mixed agricultural landscape as retrieved from airborne and satellite spectral measurements [J]. Remote Sens Environ, 2011, 115(9): 2184-2203.

    [10] Liang L, Schwartz M D, Fei S L. Validating satellite phenology through intensive ground observation and landscape scaling in a mixed seasonal forest [J]. Remote Sens Environ, 2011, 115(9):143-157.

    [11] Hilker T, Hall F G, Coops N C, et al. Remote sensing of photosynthetic light-use efficiency across two forested biomes: Spatial scaling [J]. Remote Sens Environ, 2010, 114(12): 2863-2874.

    [12] Nagler P L, Brown T, Hultine K R, et al. Regional scale impacts of Tamarix leaf beetles (Diorhabda carinulata) on the water availability of western U.S. rivers as determined by multi-scale remote sensing methods [J]. Remote Sens Environ, 2012, 118(15): 227-240.

    [13] Chasmer L, Barr A, Hopkinson C, et al. Scaling and assessment of GPP from MODIS using a combination of airborne lidar and eddy covariance measurements over jack pine forests [J]. Remote Sens Environ, 2009, 113(1): 82-93.

    [15] Zhang R H, Tian J, Li Z L, et al. Principles and methods for the validation of quantitative remote sensing products [J]. Sci China Ser Earth Sci, 2010, 53(5): 741-751.

    [17] John V M, Carol J B, Alan H S. A review of reflectance nomenclature used in remote sensing [J]. Remote Sensing Reviews, 2000, 19(1-4): 9-20.

    LUAN Hai-Jun, TIAN Qing-Jiu, GU Xing-Fa, YU Tao, HU Xin-Li. Establishing continuous scaling of NDVI based on fractal theory and GEOEYE-1 image[J]. Journal of Infrared and Millimeter Waves, 2013, 32(6): 538
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