Bistatic SAR imaging using Non-Linear Chirp Scaling.ppt
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1、20 Dec 2005,Bistatic SAR Imaging using Non-Linear Chirp Scaling,1,Bistatic SAR imaging using Non-Linear Chirp Scaling,By Y. L. Neo Supervisor : Prof. Ian Cumming Industrial Collaborator : Dr. Frank Wong,20 Dec 2005,Bistatic SAR Imaging using Non-Linear Chirp Scaling,2,Agenda,Bistatic SAR Bistatic Im
2、age Reconstruction Issues Existing Algorithms Non-Linear Chirp Scaling Algorithm Extension to NLCS Simulation Results Conclusions,20 Dec 2005,Bistatic SAR Imaging using Non-Linear Chirp Scaling,3,Bistatic SAR,In a Bistatic configuration, the Transmitter and Receiver are spatially separated and can m
3、ove along different paths. Bistatic SAR is important as it provides many advantages Cost savings by sharing active components Improved observation geometries Passive surveillance and improved survivability,20 Dec 2005,Bistatic SAR Imaging using Non-Linear Chirp Scaling,4,Current Research,Several Eur
4、opean radar research institutes - DLR, ONERA, QinetiQ and FGAN have embarked on bistatic airborne experiments. Majority of the experiments uses two existing monostatic sensors to synthesize bistatic images.Satellite missions are also proposed TanDEM X : proposal for TerraSAR-X single pass interferom
5、etry for accurate DEM DTED-3. Interferometric Cartwheel. Excellent paper Multistatic SAR Satellite Formations: Gerhard Krieger.Other research involves the use of Bistatic Parasitic SAR. Where a ground based receiver pairs up with a non-cooperative satellite transmitter.,20 Dec 2005,Bistatic SAR Imag
6、ing using Non-Linear Chirp Scaling,5,Agenda,Bistatic SAR Bistatic Image Reconstruction Issues Existing Algorithms Non-Linear Chirp Scaling Algorithm Extension to NLCS Simulation Results Conclusions,20 Dec 2005,Bistatic SAR Imaging using Non-Linear Chirp Scaling,6,Image Reconstruction Issues,Bistatic
7、 SAR data, unlike monostatic SAR data, is inherently azimuth-variant. Difficult to derive the spectrum of bistatic signal due to the double square roots term. Traditional monostatic SAR algorithms based on frequency domain methods are not able to focus bistatic SAR imagery, since targets having the
8、same range of closest approach do not necessarily collapse into the same trajectory in the azimuth frequency domain.,20 Dec 2005,Bistatic SAR Imaging using Non-Linear Chirp Scaling,7,Image Reconstruction Issues,Bistatic SAR has many configurations parallel tracks, non-parallel tracks, stationary rec
9、eiver etc. These different configurations make the derivation of the spectrum difficult Analytical solution is not available, however approximate solution exist Loffelds bistatic equation Restricted the scope of research to focusing parallel and slightly non-parallel cases,20 Dec 2005,Bistatic SAR I
10、maging using Non-Linear Chirp Scaling,8,Imaging geometry of bistatic SAR,20 Dec 2005,Bistatic SAR Imaging using Non-Linear Chirp Scaling,9,Agenda,Bistatic SAR Bistatic Image Reconstruction Issues Existing Algorithms Non-Linear Chirp Scaling Algorithm Extension to NLCS Simulation Results Conclusions,
11、20 Dec 2005,Bistatic SAR Imaging using Non-Linear Chirp Scaling,10,Existing Algorithms,Time Domain Correlation Back Projection Algorithm K Algorithm Loffelds Bistatic Equations RDA Roccas Smile,20 Dec 2005,Bistatic SAR Imaging using Non-Linear Chirp Scaling,11,Agenda,Bistatic SAR Bistatic Image Reco
12、nstruction Issues Existing Algorithms Non-Linear Chirp Scaling Algorithm Extension to NLCS Simulation Results Conclusions,20 Dec 2005,Bistatic SAR Imaging using Non-Linear Chirp Scaling,12,Non-Linear Chirp Scaling,Existing Non-Linear Chirp Scaling Based on paper by F. H. Wong, and T. S. Yeo, “New Ap
13、plications of Nonlinear Chirp Scaling in SAR Data Processing,“ in IEEE Trans. Geosci. Remote Sensing, May 2001. Assumes negligible QRCM (for SAR with short wavelength) shown to work on Monostatic case and the Bistatic case where receiver is stationary Limitations of this method is unknown May be ext
14、ended to other geometries parallel tracks, non-parallel tracks,20 Dec 2005,Bistatic SAR Imaging using Non-Linear Chirp Scaling,13,Advantages,NLCS can be used to focused bistatic data by finding the perturbation function for each bistatic configuration NLCS requires no interpolation NLCS can be used
15、in non-parallel cases The Linear RCMC step in NLCS eliminates most of the RCM and the range/azimuth phase coupling. Computational load is comparable to traditional monostatic algorithms.,20 Dec 2005,Bistatic SAR Imaging using Non-Linear Chirp Scaling,14,Main Processing Steps of NLCS Algorithm,Range
16、Compression,Linear RCMC,Non-Linear Chirp Scaling,Azimuth Compression,Baseband Signal,Focused Image,20 Dec 2005,Bistatic SAR Imaging using Non-Linear Chirp Scaling,15,Monostatic Case,Az time,Range time,A,B,C,The trajectories of three point targets in a squinted monostatic case is shown Point A and Po
17、int B has the same Closest range of approach and the same chirp rate.,20 Dec 2005,Bistatic SAR Imaging using Non-Linear Chirp Scaling,16,Chirp Rate Equalization (monostatic),20 Dec 2005,Bistatic SAR Imaging using Non-Linear Chirp Scaling,17,After LRCMC, trajectories at the same range gate do not hav
18、e the same chirp rates, an equalizing step is necessary,Once the Azimuth Chirp Rate is equalized, the image can be focused by an azimuth matched filter.,Chirp rates are equalized by phase multiply with a perturbation function hpert() along azimuth time . Monostatic CaseBistatic Case with Stationary
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