DocumentCode
1955612
Title
Detection of fluctuating targets in the presence of clutter in HRR(high range resolution) RADARS using the Hough transform
Author
Riazi, Vahid ; Haghjoo, Fariba ; Sheikhi, Abbas
Author_Institution
Electr. Eng. Dept., Shiraz Univ., Shiraz, Iran
fYear
2011
fDate
25-27 Aug. 2011
Firstpage
327
Lastpage
331
Abstract
As we know, in the HRR RADARs we face range walking phenomenon, in fact, when a target moves during a CPI (Coherent Processing Interval), target returns from different scattering centers of the target produce different patterns in successive scans, this causes range walking. Therefore make the Performance of Conventional methods to maximize signal to noise ratio inefficient. Our solution for this problem uses the Hough transform which employs the slope-intercept parameter space. In this paper we investigate the performance of Hough transform-based detector for HRR RADAR signals, in the presence of Weibull and Rayleigh distributed clutter for non-fluctuating and four types of Swerling targets we also consider the effect of the velocity of target and number of pulses. The performance of target detection of Hough transform-based detector is analyzed through Monte-Carlo simulation runs.
Keywords
Hough transforms; Monte Carlo methods; Weibull distribution; radar clutter; radar detection; radar resolution; Hough transform; Monte Carlo simulation; Rayleigh distributed clutter; Swerling targets; Weibull distribution; coherent processing interval; fluctuating target detection; high range resolution radar; radar clutter; range walking phenomenon; signal-to-noise ratio; slope-intercept parameter space; Clutter; Detectors; Radar clutter; Radar detection; Transforms; HRR(High Range Resolution) RADAR; Hough transform; Rayleigh distributed; UWB(Ultra Wide Band)RADAR; Weibull clutter;
fLanguage
English
Publisher
ieee
Conference_Titel
Microwaves, Radar and Remote Sensing Symposium (MRRS), 2011
Conference_Location
Kiev
Print_ISBN
978-1-4244-9641-9
Type
conf
DOI
10.1109/MRRS.2011.6053666
Filename
6053666
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