Title :
Spectral 2-D image reconstruction in ISAR with linear frequency modulated signals
Author :
Lazarov, Andon ; Minchev, Chavdar
Author_Institution :
Artillery & Air-Defence Mil. Acad., Shoumen, Bulgaria
Abstract :
In this work inverse synthetic aperture radar (ISAR) signal processing of linear frequency modulated (LFM) signals for image retrieval is presented. The procedure comprises both range compression and azimuth compression. Most well-known image reconstruction methods are applied over the frequency space of ISAR signals. This technique requires implementing fast Fourier transforms (FFT) more than twice to the time record of ISAR returns. In this exploration, the image processing is accomplished over the time record of ISAR signal returns. In accessible literature, the ISAR signal processing is generally performed assuming that the target exhibits only rotational motion around its mass-center, while radial displacement of the object is always compensated. Unlike this conventional kinematic model, the ISAR signal processing is performed here by assuming arbitrary rectilinear movement of a target in the 2D coordinate system. By applying an analytical geometric approach, 2D ISAR geometry and kinematics needed for signal modeling are developed. The proposed spectral image reconstruction procedure is invariant to the trajectory parameters of the object. Numerical experiments proving the ability and accuracy of the spectral ISAR image reconstruction procedure are accomplished
Keywords :
image reconstruction; military radar; motion compensation; numerical analysis; radar imaging; radar tracking; synthetic aperture radar; target tracking; 2D coordinate system; ISAR; ISAR geometry; ISAR kinematics; ISAR return time record; ISAR signal frequency space; ISAR signal modeling; ISAR signal processing; ISAR signal return time record; LFM signals; analytic geometric approach; azimuth compression; fast Fourier transform; image processing; image reconstruction methods; image retrieval; inverse synthetic aperture radar; kinematic model; linear frequency modulated signals; numerical experiment; object trajectory parameter invariance; radial displacement compensation; range compression; rotational motion; spectral 2D image reconstruction; spectral ISAR image reconstruction procedure; spectral image reconstruction procedure; target arbitrary rectilinear movement; Azimuth; Chirp modulation; Frequency modulation; Image coding; Image reconstruction; Image retrieval; Inverse synthetic aperture radar; Kinematics; Radar signal processing; Signal processing;
Conference_Titel :
Digital Avionics Systems, 2001. DASC. 20th Conference
Conference_Location :
Daytona Beach, FL
Print_ISBN :
0-7803-7034-1
DOI :
10.1109/DASC.2001.963380