DocumentCode :
2106973
Title :
Data-adaptive motion compensation for synthetic aperture LADAR
Author :
Attia, E. Hesham
Author_Institution :
Imaging Microsensors, Inc., Blue Bell, PA, USA
Volume :
3
fYear :
2004
fDate :
6-13 March 2004
Abstract :
In this paper, we discuss the application of the spatial correlation algorithm (SCA) (Attia and Steinberg, 1989; Attia, 1993; Attia, 1994), and some of its variants, to synthetic aperture LADAR (SAL) imaging. These algorithms (which derive the required phase corrections from range-resolved LADAR clutter received by the SAL sensor) are very robust, computationally efficient, perform very well in the presence of large uncorrelated phase errors, and do not require dominant scatterers of opportunity. Performance and limitations of the basic SCA are discussed. Dependence of the accuracy of the resulting phase corrections on the SNR per pulse and number of range cells available for estimating the corrections is presented in considerable detail. The impact of residual uncorrected phase errors on image SNR and dynamic range is statistically evaluated taking into account the total number of pulses coherently combined along the imaging baseline. Also, a method for exploiting special features of 3D interferometric SAL imaging for the purpose of improving phase correction accuracy is introduced.
Keywords :
image sensors; laser ranging; light interferometry; motion compensation; optical correlation; optical radar; radar imaging; synthetic aperture radar; 3D interferometric SAL imaging; LADAR clutter; SAL sensor; data-adaptive motion compensation; dynamic range; image SNR; laser detection and ranging; phase corrections; residual uncorrected phase errors; spatial correlation algorithm; synthetic aperture LADAR imaging; Adaptive optics; Clutter; Error correction; High-resolution imaging; Laser radar; Low earth orbit satellites; Motion compensation; Optical distortion; Optical imaging; Optical scattering;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Aerospace Conference, 2004. Proceedings. 2004 IEEE
ISSN :
1095-323X
Print_ISBN :
0-7803-8155-6
Type :
conf
DOI :
10.1109/AERO.2004.1367958
Filename :
1367958
Link To Document :
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