DocumentCode
3187018
Title
A FFT based algorithm for the formation of wide-angle ISAR images using EIP
Author
Moore, Thomas G.
Author_Institution
Lincoln Lab., MIT, Lexington, MA, USA
fYear
1995
fDate
8-11 May 1995
Firstpage
392
Lastpage
395
Abstract
This paper describes a new algorithm for implementing wide angle imaging. The new algorithm is derived from the enhanced image processing (EIP) algorithm described by Ausherman et al. (1984) and is based on using the Fast Fourier Transform (FFT) to rotate and interpolate the linear images before compositing. The new algorithm is more accurate than the linear interpolation based compositing scheme used by Ausherman and is designed to perform efficiently on modern vector array processors. First, correlation imaging and the relationship between linear imaging and wide angle imaging is discussed. Following the discussion of the enhanced imaging technique, the new algorithm for implementing the EIP is described. After the theory is discussed, an example demonstrating the efficacy of the new algorithm is presented. The effect of different strategies for reducing sidelobes in the EIP imagery is also discussed. A comparison of the computational complexity of the new algorithm with the traditional algorithm is presented. The paper concludes with a summary
Keywords
computational complexity; correlation methods; fast Fourier transforms; image enhancement; interpolation; parallel processing; radar imaging; synthetic aperture radar; EIP; FFT based algorithm; compositing; computational complexity; correlation imaging; enhanced image processing algorithm; fast Fourier transform; linear images; sidelobes reduction; vector array processors; wide angle imaging; wide-angle ISAR images; Bandwidth; Fast Fourier transforms; Image processing; Image resolution; Interpolation; Laboratories; Linear approximation; Matched filters; Radar imaging; Radar scattering;
fLanguage
English
Publisher
ieee
Conference_Titel
Radar Conference, 1995., Record of the IEEE 1995 International
Conference_Location
Alexandria, VA
Print_ISBN
0-7803-2121-9
Type
conf
DOI
10.1109/RADAR.1995.522578
Filename
522578
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