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Articles

A comparison of NDVI and EVI in the DisTrad model for thermal sub-pixel mapping in densely vegetated areas: a case study in Southern China

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Pages 2105-2118 | Received 15 Sep 2016, Accepted 12 Dec 2017, Published online: 09 Jan 2018

References

  • Agam, N., W. P. Kustas, M. C. Anderson, F. Li, and C. M. U. Neale. 2007. “A Vegetation Index Based Technique for Spatial Sharpening of Thermal Imagery.” Remote Sensing of Environment 107 (4): 545–558. doi:10.1016/j.rse.2006.10.006.
  • Choudhury, B. J., N. U. Ahmed, S. B. Idso, R. J. Reginato, S. Craig, and T. Daughtry. 1994. “Relations between Evaporation Coefficients and Vegetation Indices Studied by Model Simulations.” Remote Sensing of Environment 50 (1): 1–17. doi:10.1016/0034-4257(94)90090-6.
  • Deng, W., Y. Q. Wan, and R. C. Zhao. 2001. “Detecting Coal Fires with a Neural Network to Reduce the Effect of Solar Radiation on Landsat Thematic Mapper Thermal Infrared Images.” International Journal of Remote Sensing 22 (6): 933–944. doi:10.1080/014311601300074469.
  • Essa, W., B. Verbeiren, J. Van Der Kwast, T. Van De Voorde, and O. Batelaan. 2012. “Evaluation of the DisTrad Thermal Sharpening Methodology for Urban Areas.” International Journal of Applied Earth Observation & Geoinformation 19 (1): 163–172. doi:10.1016/j.jag.2012.05.010.
  • Huete, A., K. Didan, T. Miura, E. P. Rodriguez, X. Gao, and L. G. Ferreira. 2002. “Overview of the Radiometric and Biophysical Performance of the MODIS Vegetation Indices.” Remote Sensing of Environment 83 (1–2): 195–213. doi:10.1016/S0034-4257(02)00096-2.
  • Kogan, F. N. 2001. “Operational Space Technology for Global Vegetation Assessment.” Bulletin of the American Meteorological Society 82 (9): 1949–1964. doi:10.1175/1520-0477(2001)082<1949:OSTFGV>2.3.CO;2.
  • Kustas, W. P., J. M. Norman, M. C. Anderson, and A. N. French. 2003. “Estimating Subpixel Surface Temperatures and Energy Fluxes from the Vegetation Index–Radiometric Temperature Relationship.” Remote Sensing of Environment 85 (4): 429–440. doi:10.1016/S0034-4257(03)00036-1.
  • Lambin, E. F., and D. Ehrlich. 1996. “The Surface Temperature-Vegetation Index Space for Land Cover and Land-Cover Change Analysis.” International Journal of Remote Sensing 17 (3): 463–487. doi:10.1080/01431169608949021.
  • Lv, Q. Q., J. H. Ding, and C. S. Cui. 2000. “Probable Satellite Thermal Infrared Anomaly before the Zhangbei M_S=6.2 Earthquake on January 10, 1998.” Acta Seismologica Sinica 13 (2): 203–209. doi:10.1007/s11589-000-0011-1.
  • Merlin, O., B. Duchemin, O. Hagolle, F. Jacob, B. Coudert, G. Chehbouni, G. Dedieu, J. Garatuza, and Y. Kerr. 2010. “Disaggregation of MODIS Surface Temperature over an Agricultural Area Using a Time Series of Formosat-2 Images.” Remote Sensing of Environment 114 (11): 2500–2512. doi:10.1016/j.rse.2010.05.025.
  • NASA. 2013. “Normalized Difference Vegetation Index (NDVI).” January 9. Accessed 9 January 2013. http://earthobservatory.nasa.gov/Features/MeasuringVegetation/measuring_vegetation_2.php
  • NASA, The Land Processes Distributed Active Archive Center (LP DAAC). 2001. “ASTER Level 2 Surface Temperature Product.” Accessed 9 January 2013. https://lpdaac.usgs.gov. doi:10.5067/ASTER/AST_L1T.003.
  • Peng, G. X., L. I. Jing, Y. H. Chen, and A. P. Norizan. 2007. “A Forest Fire Risk Assessment Using ASTER Images in Peninsular Malaysia.” Journal of China University of Mining & Technology 17 (2): 232–237. doi:10.1016/S1006-1266(07)60078-9.
  • Sandholt, I., K. Rasmussen, and J. Andersen. 2002. “A Simple Interpretation of the Surface Temperature/Vegetation Index Space for Assessment of Surface Moisture Status.” Remote Sensing of Environment 79 (2–3): 213–224. doi:10.1016/S0034-4257(01)00274-7.
  • Sun, L., R. Sun, L. Xiaowen, S. Liang, and R. Zhang. 2012. “Monitoring Surface Soil Moisture Status Based on Remotely Sensed Surface Temperature and Vegetation Index Information.” Agricultural & Forest Meteorology (166–167): 175–187. doi:10.1016/j.agrformet.2012.07.015.
  • Zakšek, K., and O. Krištof. 2012. “Downscaling Land Surface Temperature for Urban Heat Island Diurnal Cycle Analysis.” Remote Sensing of Environment 117 (1): 114–124. doi:10.1016/j.rse.2011.05.027.
  • Zhan, W., Y. Chen, J. Zhou, J. Wang, W. Liu, J. Voogt, X. Zhu, J. Quan, and L. Jing. 2013. “Disaggregation of Remotely Sensed Land Surface Temperature: Literature Survey, Taxonomy, Issues, and Caveats.” Remote Sensing of Environment 131 (8): 119–139. doi:10.1016/j.rse.2012.12.014.
  • Zhang, J., and Y. Wang. 2006. “A Pixel-Based Method to Estimate Urban Compactness and Its Preliminary Application.” International Journal of Remote Sensing 27 (24): 5435–5442. doi:10.1080/01431160600983638.

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