DocumentCode
2149010
Title
A novel method of translational motion compensation for hopped-frequency ISAR imaging
Author
Liu, Zheng ; Zhang, Shouhong
Author_Institution
Nat. Key Lab. for Radar Signal Process., Xidian Univ., Xi´´an, China
fYear
2000
fDate
2000
Firstpage
255
Lastpage
260
Abstract
With adoption of the hopped-frequency pulse waveform to inverse synthetic aperture radar (ISAR), a novel method for motion compensation in ISAR imaging, named the minimum waveform entropy method of parameter estimation, is proposed. A measure function, called the waveform entropy, is employed to measure the effects of target motion on both Doppler amplitude spectra and slant range profiles. The method can achieve optimal estimation of motion parameters of a target based on the minimum waveform entropy rule. In addition, the method converts a two-dimensional search for the velocity and acceleration of a target into two one-dimensional searches for the velocity and acceleration respectively, which greatly decreases computational cost, and conveniently realizes real-time processing. Simulation results indicate that the method can accomplish accurate estimation of motion parameters of a target with a good anti-noise performance, thus making it possible to image a target in clutter background
Keywords
Doppler radar; minimum entropy methods; motion compensation; motion estimation; optimisation; parameter estimation; radar clutter; radar imaging; radar theory; radar tracking; search radar; synthetic aperture radar; target tracking; Doppler amplitude spectra; ISAR imaging; anti-noise performance; clutter; computational cost; hopped-frequency pulse waveform; inverse synthetic aperture radar; measure function; minimum waveform entropy method; motion estimation; one-dimensional searches; optimal estimation; parameter estimation; real-time processing; simulation; slant range profiles; target motion; translational motion compensation; waveform entropy; Acceleration; Clutter; Computational efficiency; Computational modeling; Entropy; Inverse synthetic aperture radar; Motion compensation; Motion estimation; Motion measurement; Parameter estimation;
fLanguage
English
Publisher
ieee
Conference_Titel
Radar Conference, 2000. The Record of the IEEE 2000 International
Conference_Location
Alexandria, VA
Print_ISBN
0-7803-5776-0
Type
conf
DOI
10.1109/RADAR.2000.851842
Filename
851842
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