DocumentCode :
614225
Title :
Exploring MODIS band 23 for urban remote sensing: Seasonal and view angle effects
Author :
Krehbiel, C. ; Henebry, G.
Author_Institution :
Geographic Inf. Sci. Center of Excellence (GIScCE), South Dakota State Univ., Brookings, SD, USA
fYear :
2013
fDate :
21-23 April 2013
Abstract :
Spanning 3-5 microns, the middle infrared (MIR) region (3-5μm) of the electromagnetic spectrum has received little attention in terrestrial remote sensing. Here we explore the potential of MIR for urban remote sensing. We focus on MODIS band 23 (4.02-4.08 μm) at a spatial resolution of 1 km. By capturing both the solar reflectance and terrestrial emittance, the MIR offers some new approaches for monitoring urban areas. We are interested in the seasonal contrast created by MIR-dark vegetation and MIR-bright impervious surfaces, which allow urban areas to emerge from the surrounding vegetated landscape. We found (1) Viewing geometry and (2) land surface phenology (LSP) due to distinct spectral characteristics of impervious surfaces and vegetation to be two major influences on the dynamics of MIR brightness. Analyzing the dynamics of MIR brightness in relation to seasonal and view angle effects, is a key consideration for future image processing and compositing, urban morphology monitoring, and analysis.
Keywords :
geophysical techniques; remote sensing; vegetation; MIR-bright impervious surfaces; MIR-dark vegetation; MODIS Band 23; electromagnetic spectrum; image processing; land surface phenology; middle infrared region; seasonal effect; solar reflectance; surrounding vegetated landscape; terrestrial emittance; terrestrial remote sensing; urban morphology monitoring; urban remote sensing; view angle effect; viewing geometry; wavelength 3 mum to 5 mum; wavelength 4.02 mum to 4.08 mum; Brightness; Land surface; MODIS; Remote sensing; Soil; Vegetation mapping;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Urban Remote Sensing Event (JURSE), 2013 Joint
Conference_Location :
Sao Paulo
Print_ISBN :
978-1-4799-0213-2
Electronic_ISBN :
978-1-4799-0212-5
Type :
conf
DOI :
10.1109/JURSE.2013.6550674
Filename :
6550674
Link To Document :
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