DocumentCode :
3026061
Title :
Mapping forest biomass using ALOS digital surface model and pan-sharpen image
Author :
Motohka, Takeshi ; Yoshida, Takafumi ; Shibata, Hajime ; Tadono, Takeo ; Shimada, Masanobu
Author_Institution :
Earth Obs. Res. Center, Japan Aerosp. Exploration Agency (JAXA), Tsukuba, Japan
fYear :
2013
fDate :
21-26 July 2013
Firstpage :
968
Lastpage :
971
Abstract :
In this study, we examine the applicability of digital surface model (DSM) generated from ALOS PRISM data for mapping forest above ground biomass (AGB). We obtained the digital canopy height model (DCHM) by calculating the differences between the PRISM DSM and surveying-based digital elevation model (DEM), and investigated the relationship between the DCHM values and field measured mean tree height and AGB in Northern Hokkaido, Japan. The results show a strong linear relationship between the field measured AGB and PRISM-DCHM (R = 0.872, n = 25). The RMSE and bias of the regression model, which were evaluated by the leave-one-out cross validation, are 38.1 t/ha (22 %) and -0.2 t/ha, respectively. Saturation at high AGB is not shown. We also demonstrate the wall-to-wall AGB mapping by using the regression model and the PRISM DCHM image. A pan-sharpen image generated from PRISM and AVNIR-2 images is utilized for forest cover mapping. The PRISM-based AGB values are generally reasonable except for high mountain areas. The relationship between the PRISM AGB and backscattering coefficient measured by L-band synthetic aperture radar (PALSAR) is consistent with the regression models discovered by the previous researches.
Keywords :
digital elevation models; land cover; remote sensing by radar; surveying; synthetic aperture radar; vegetation mapping; ALOS PRISM data; ALOS digital surface model; DCHM values; Japan; Northern Hokkaido; PALSAR; digital canopy height model; forest above ground biomass; forest biomass mapping; leave-one-out cross validation; pan sharpen image; regression model; surveying; synthetic aperture radar; Backscatter; Biological system modeling; Biomass; Estimation; Satellite broadcasting; Satellites; Vegetation; ALOS; AVNIR-2; PALSAR; PRISM; above ground biomass; digital canopy height model;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Geoscience and Remote Sensing Symposium (IGARSS), 2013 IEEE International
Conference_Location :
Melbourne, VIC
ISSN :
2153-6996
Print_ISBN :
978-1-4799-1114-1
Type :
conf
DOI :
10.1109/IGARSS.2013.6721323
Filename :
6721323
Link To Document :
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