Title :
Nonlinearity and the effect of detection on single-channel synthetic aperture radar imagery
Author :
El-Darymli, Khalid ; Moloney, Cecilia ; Gill, Eberhard ; Mcguire, Peter ; Power, Desmond ; Deepakumara, Janaka
Author_Institution :
Fac. of Eng. & Appl. Sci., Memorial Univ. of Newfoundland, St. John´s, NL, Canada
Abstract :
When signals exhibit non-Gaussian statistics, nonlinear signal processing techniques offer advantages over their linear counterparts. Nonlinearity in high-resolution synthetic aperture radar (SAR) imagery is an intrinsic phenomenon often overlooked in the radar literature. In this paper, we study the nonlinear dynamics, and the effect of detection, in SAR imagery. To this end, two complementary methods for exposing the nonlinear statistics are presented. The first method utilizes histogram fitting with relevant statistical models. The second method is based on hypothesis testing. Our results are demonstrated on real-world Radarsat-2 target chips. It is found that in the presence of extended targets (e.g., ships), the nonlinear effect in the SAR chip is predominant. Nonlinearity is observed to be negligible in the absence of extended targets. As the SAR chip is detected, the nonlinear dynamics are either diminished/altered (i.e., for power-detection) or obliterated (i.e., for magnitude-detection). To take full advantage of nonlinear statistics, it is recommended to utilize the complex-valued SAR image rather than the detected one. Furthermore, the Student´s T location-scale distribution is seen to offer an excellent model for the SAR chip.
Keywords :
image resolution; radar detection; radar imaging; radar resolution; statistical testing; synthetic aperture radar; SAR chip; SAR imagery; complex-valued SAR image; detection effect; high-resolution synthetic aperture radar imagery; histogram fitting; hypothesis testing; nonGaussian statistics; nonlinear dynamics; nonlinear signal processing techniques; nonlinear statistics; real-world Radarsat-2 target chips; single-channel synthetic aperture radar imagery; statistical models; student T location-scale distribution; Gaussian distribution; Histograms; Nonlinear dynamical systems; Semiconductor device measurement; Shape; Signal processing; Synthetic aperture radar; SAR; detection; extended-target; nonlinear;
Conference_Titel :
OCEANS 2014 - TAIPEI
Conference_Location :
Taipei
Print_ISBN :
978-1-4799-3645-8
DOI :
10.1109/OCEANS-TAIPEI.2014.6964493