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RMSE X = 2.7 m
RMSE y = 3.9 m
RMSÉ h = 2.8 m
4. DISCUSSION AND CONCLUSIONS
ALOS-PRISM allows for a positional accuracy and density of
information well compatible with mapping scale 1:25,000. The
methodology proposed in this paper is capable of doing an
image orientation nearly as good as what is achieved with
standard GCPs. The main advantage is to avoid any field work
for GCP collection. However the method still has to be tested
with images of different areas, in different types of terrain in
order to be completely validated.
The method was applied to images of mode 1B2-R, which are
not in original sensor geometry. This may limit the potential
positional accuracy of ALOS-PRISM. Anyway the principle of
orientation with a reference DEM surface can also be applied to
images of modes 1A or 1B1, in original sensor geometry. In
that case a rigorous sensor model would be used, doing
adjustments in actual exterior orientation parameters, such as
the sensor attitude angles.
A limitation that can be pointed to this methodology of
matching elevation data is that it does not work in flat areas.
However it still works in areas with relatively small mean
slopes, such as 5%.
References from Journals:
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ACKNOWLEDGEMENTS
To the Japanese Space Agency (JAXA) and European Space
Agency (ESA) for providing PRSIM images under ALOS
ADEN proposal no. 3738.
To the Portuguese Geographic Institute for providing the
control DEM.
SRTM data provided by NASA/NGA/USGS.
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Baudoin, A., M. Schroeder, C. Valorge, M. Bernard, V.
Rudowski, 2004, The HRS-SAP initiative: A scientific
assessment of the High Resolution Stereoscopic instrument on
board of SPOT 5 by ISPRS investigators. ISPRS Congress
Istanbul 2004.
Fraser, C., Rottensteiner, F., Weser, T., Willneff, J., 2007. A
New Generic Sensor Orientation Model Applied to Alos
Imagery. Proceedings of the First PI Symposium of ALOS Data
Nodes, Kyoto, Nov., 2007 (CD-ROM).