ages
ed
nous
y.
fo
tive
yme-
ee
alled
e
nate
he
cene
rans-
nent,
on of
posi-
T-
has to
ed in
ing to
eoplot-
of 50
je with
c
erfor-
nsfor-
tem
are
nsfor-
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has
nate
where
am and
mation
, pro-
s, but
ine
the real-
s data
oy use of
ely
y three-
line imagery directly in the PHODIS orientation process.
Practical experiences with the system presented here will be
obtained by compiling from MOMS-02, HRSC and WAOSS
data.
Past obstacles in the workflow such as restrictions on the
processing speed of the computer and the available graphical
subsystems as well as the digital-analog conversion of the
image data have been overcome. Thus the spectrum of the
image data that can be processed with the standard product
PHODIS ST has been expanded.
Still unresolved is the optimum use of the information content
of three-line images. This could be done by matching in the
third image (e.g. HRSC channel).
5 ACKNOWLEDGEMENTS
We receive valuable support by Rüdiger Brand and Manfred
Stephani at the Technical University Munich, which is grate-
fully acknowledged. Parts of the work presented is funded by
grant 500M9205 of the German Space Agency (DARA).
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