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The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences. Vol. XXXVII. Part Bl. Beijing 2008
443
'"m,
1« 3C0 2» 30D 360
500 553
Figure 5. The simulated LADAR data on the input DEM
Figure 6. The simulated LADAR data
4. CONCLUSIONS
In this study, we derive the LADAR sensor equation and
present a simulation method based on this equation using a ray
tracing algorithms. Using this method, we have successfully
generated simulated LADAR data based on an input DEM and
the specified system parameters.
The simulated data acquired by the simulator developed by this
study will be effectively contributed to developing the data
processing algorithms for diverse LADAR applications as the
developments require various test data to assess the
performance of the algorithms being developed. Furthermore,
since the simulation will enable to determine the data quality to
be acquired more economically and rapidly before the actual
flight, it will be usefully applied to optimizing the system
parameters during the development of a LADAR system.
the elevation difference [m]
-15 -10 -5 0 5 10 15
the elevation difference [m]
Figure 7. The histogram of the elevation differences between
the simulated LADAR points and the input DEM
REFERENCES
Kamerman, G. W., 1993. Active Electro-Optical Systems. SPIE
Optical Engineering Press, Vol.6, pp. 3~9.
Lee, I., 2003. Verification and Calibration of LIDAR Databased
on Simulation with High-resolution DEMs. KSCE Annual
Conference, pp. 4436-4440.
Lee, L, et. al., 2005. A Study on Establishing Multi-dimensional
Spatial Information, National Geographic Information Institute,
pp. I-13— 38.
Schenk, T., 2001, Modeling and analyzing systematic errors of
airborne laser scanners. Technical Notes in Photogrammetry
No. 19, The Ohio State University, Columbus, OH, USA.
ACKNOWLEDGEMENTS
This research was supported by the Defense Acquisition
Program Administration and Agency for Defense Development,
Korea, through the Image Information Research Center at
Korea Advanced Institute of Science & Technology under the
contract UD070007AD.