I. Reconstruction-d-'images-en-mode, 71 5.6-Simulations sur des cibles complexes (a) Image monostatique

. [. Bibliographie, A. Airiau, and . Khenchaf, A methodology for modeling and simulating target echoes with a moving polarimetric bistatic radar, Radio Science, vol.35, issue.3, pp.773-782, 2000.

B. K. Abbott, G. Leblon, M. E. Staples, D. Alexander, and . Maclean, Use of RADARSAT-1 images to map forest fuel moisture over boreal forests, IEEE International Geoscience and Remote Sensing Symposium, pp.134-136, 2002.
DOI : 10.1109/IGARSS.2002.1024965

R. [. Askari, J. Signell, J. Chiggiato, and . Doyle, Radarsat mapping of bora/sirocco winds in the adratic sea, pp.236-238, 2003.

]. S. Axe03 and . Axelsson, Estimation of target position and velocity using data from multiple radar stations, pp.4140-4143, 2003.

]. D. Bar05 and . Barton, Radar system analysis and modeling, 2005.

]. M. Ben04 and . Kassem, SAR monostatique et bistatique Etude et analyse des méthodes de reconstruction d'imagerie radar, Thèse de doctorat, Ecole polytechnique de l'université de Nantes, 2004.

I. [. Burkholder, J. T. Gupta, and . Johnson, Comparison of monostatic and bistatic radarlmages, IEEE Antennas and Propagation Magazine, vol.45, issue.3, pp.41-50, 2003.
DOI : 10.1109/MAP.2003.1232162

A. [. Kassem and . Khenchaf, Bistatic mapping radar BISAR, Oceans 2003. Celebrating the Past ... Teaming Toward the Future (IEEE Cat. No.03CH37492), pp.22-26, 2003.
DOI : 10.1109/OCEANS.2003.1283032

URL : https://hal.archives-ouvertes.fr/hal-00518836

A. [. Ben-kassem, J. Khenchaf, and . Saillard, Bisar mapping modelisation and processing, European Conference on Propagation and Systems, pp.15-18, 2005.
URL : https://hal.archives-ouvertes.fr/hal-00518748

A. [. Bruniquel and . Lopes, Multi-variate optimal speckle reduction in SAR imagery, International Journal of Remote Sensing, vol.18, issue.3, pp.603-627, 1997.
DOI : 10.1080/014311697218962

]. E. Bla01, . [. Blazejczack, F. Bouche, E. Molinet-mott, C. Lunenburg et al., Polarimetry in Remote Sensing : Basic and Applied Concepts Mathematical problems in radar inverse scattering Institue of Physics Publishing The scattering of electromagnetic waves from rough surfaces Radar bistatiquè a ouverture synthétique Wolf : Principles of optics : Electromagnetic theory of propagation. Interference and diffraction of light Comparaison of monostatic and bistatic dearing estimation performance for low rcs targets Introduction to radar polarimetry with assesments of the historical development and of the current state-ofthe-art Ayari, F. Pellen et A. Khenchaf : Bistatic radar imaging system for sea surface target detection Spotlight Synthetic Aperture Radar : Signal Processing Algorithms Challe : Caractérisation d'une Cible en Présence de Trajets Multiples par Traitement Polarimétrique Munk : Statistics of the sea surface derived from sun glitter : A comparison of omega-k and generalized sar inversion for runway imaging, Autofocalisation pour améliorer la classification des cibles aériennesaériennesà partir des images isar. Rapport CNAM Méthodes asymptotiques enélectromagnétisme enélectromagnétisme. Springer verlag XIIIème Journées Nationales Microondes Journées Internationales de la polarimétrie Radar Thèse de doctoratCM91] J. Curlander et R. McDonough : Synthetic Aperture Radar : Systems and Signal Processing International Conference on Image Processing septembre 2000. [CNW03] I.G. Cumming, Y.L. Neo et F.H. Wong : Interpolations of the omega-k algorithm and comparaisons with other algorithms, pp.1-28962, 1954.

]. R. Bibliographiecol92, . F. Collin, F. Comblet, A. Pellen, A. Baussard et al., Foundations for Microwave Engineering Sar processing and resolution for bistatic configuration Simulations and experiments on bistatic imaging radar Bistatic sar : simulation and experiments on complex objects Sar data focusing using seismic migration techniques A new statistical model of urban areas in high resolution sar images for markovian segmentation Analysis of space-surface interferometric bistatic radar Plakidis : Galileo signal based bistatic system for avalanche prediction Davidson et I.G. Cumming : Signal properties of spaceborne squint-mode sar, European Conference on Propagation and Systems IGARSSDao96] F. Daout : Etude de la dépolarisation des ondes centimétriques par une surface rugueuse -Application au domaine maritime Thèse de doctoratDar93] J. Darricau : Physique et Théorie du Radar. Edition SodipeDar96] J. Darricau : Radar : principes etélémentsetéléments de base Davidson, I.G. Cumming et M.R. Ito : A chirp scaling approach for processing squint mode sar data. IEEE Trans. on Aerospace and Electronic Systems, pp.18-22, 1991.

H. Dubois-fernandez, O. Cantalloube, M. Ruault-du-plessis, R. Wendler, B. Horn et al., Analysis of bistatic scattering behavior of natural surfaces Effect of the salinity and temperature on the electromagnetic field scattered by the sea surface, pp.18-2294, 1994.

. [. Bibliographie, B. Elfouhaily, K. Charpon, R. L. Katsaros, P. J. Eigel et al., A unified directional spectrum for long and short wind-driven waves Bistatic scattering characterization of complex objects, Journal of Geophysical Research IEEE Trans. Geoscience and Remote Sensing, vol.102, issue.385, pp.15781-157962078, 1997.

I. Erer, S. Kent, M. Kartal, S. Kargin-assad, I. Lakkis et al., Superresolution bistatic spotlight sar imaging using image fusion Holographic sar image formation by coherent summation of impulse response derivatives Spacebased sar/mti using multistatic satellite configurations A step to bistatic sar processing Eom : Multiple scattering and depolarization by a randomly rough kirchhoff surface Lee : A semi-empirical sea-spectrum model for scattering coefficient estimation Porat : Vsar : A high resolution radar system for ocean imaging Holtzman : A model for radar images and its application to adaptive digital filtering of multiplicative noise, FGS02] P. Ferrazzoli, L. Guerriero et D. Solimini : Could bistatic observations contribue to forest biomass monitoring. Dans IGARSS octobre 1982. [FP98] B. Friedlander et BFun84] A.K. Fung : Surface scattering effects at different spectral regions, pp.787-790, 1981.

D. Ed, . G. Inra-publ, L. Galati, H. Gurel, J. C. Bagci et al., Signatures Spectrales d'objets en télédétection Advenced radar techniques and systems. Peregrinus Validation through comparison : measurement and calculation of the bistatic radar cross section (brcs) of a stealth target Goodman : Statistical analysis based on a certain multivariate complex gaussian distribution (an introduction), Radio science Annals of Mathematical Statistics, vol.3810, issue.34, pp.693-707, 1963.

]. J. Bibliographie-[-goo76a and . Goodman, Some fundamental properties of speckle, Journal of the Optical Society of America, vol.66, pp.1145-1149, 1976.

]. J. Goo76b and . Goodman, Statistical Optics, 1976.

I. [. Gierull, Sikaneta : Raw data based two-aperture sar ground moving target indication, IGARSS, pp.1032-1034, 2003.
DOI : 10.1109/igarss.2003.1294002

]. E. Her00 and . Hervet, Appariement d'images RadaràRadarà Synthèse d'ouverture en condition radargrammétriques, Thèse de doctorat, 2000.

K. [. Hughes and G. J. Gault, Princz : A comparaison of the range-doppler and chirp scaling algorithms with reference to radarsat, pp.1221-1223, 1996.

P. [. Hardange, J. Lacomme, P. Horstmann, S. Vachon, and . Lehner, Radars aéroportés et spatiaux Clloection scientifique et technique Thomson-csf, ´ editions Masson Hoja : Sar measurements of ocean wind and wave fields in hurricanes, pp.230-232, 1995.

J. [. He, G. H. Xiu, and J. H. Wang, Theorem for the combination of bistatic radar measurements using least squares, IEEE Transactions on Aerospace and Electronic Systems, vol.39, issue.4, pp.1441-1445, 2003.
DOI : 10.1109/TAES.2003.1261138

]. G. Jam76, James : Geometrical theory of electromagnetic waves, 1976.

O. [. Khenchaf and . Airiau, Bistatic radar moving returns from sea surface, IEICE Trans. on Electronics, issue.12, pp.1827-1835, 2000.
URL : https://hal.archives-ouvertes.fr/hal-00518884

F. [. Khenchaf, J. Daout, and . Saillard, Bistatique polarized scattering by rough surfaces, Proc. of the third International workshop on radar polarimetry, pp.175-186, 1995.

F. [. Khenchaf, J. Daout, and . Saillard, The two scales model for random rough surface scattering, pp.23-26, 1996.

]. J. Kel62 and . Keller, Geometrical theory of diffraction, Journal of the Optical Society of America, vol.52, issue.2, pp.116-130, 1962.

H. [. Krieger and . Fielder, Moriera : Bi-and multistatic sar : Potentials and challenges, pp.365-369, 2004.
DOI : 10.1049/ip-rsn:20045111

URL : http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.622.9034

]. A. Bibliographie-[-khe99 and . Khenchak, Sea surface scattering for near-grazing incidence, pp.13-16, 1999.

]. A. Khe00, Khenchaf : ModélisationModélisationélectromagnétique, Radar bistatique et Traitement de l'information. HDR, 2000.

]. A. Khe01 and . Khenchaf, Bistatic scattering and depolarization by randomly rough surfaces : application to the natural rough surfaces in x-band

]. M. Kli51 and . Kline, An asymptotic solution of maxwell's equations. The theory of Electromagnetic Waves, pp.225-262, 1951.

P. [. Kouyoumjian and . Pathak, A uniform geometrical theory of diffraction for an edge in a perfectly conducting surface, Proceedings of the IEEE, vol.62, issue.11, pp.1448-1461, 1974.
DOI : 10.1109/PROC.1974.9651

. Wong, Precision sar processing using chirp scaling, IEEE Trans. Geoscience and Remote Sensing, vol.32, issue.4, pp.786-799, 1994.

C. [. Klein and . Swift, An improved model for the dielectric constant of sea water at microwave frequencies, IEEE Transactions on Antennas and Propagation, vol.25, issue.1, pp.104-111, 1977.
DOI : 10.1109/TAP.1977.1141539

A. [. Kuan, T. C. Sawchuk, P. Strand, and . Chavel, Adaptative noise smoothing filter for images with signal-dependent noise, IEEE Trans. Pattern Anal. Machine Intell, vol.7, pp.165-177, 1985.

]. G. Kwf-+-02, M. Krieger, H. Wendler, J. Fieldler, and . Mittermayer, Moreira : Performance analysis for bistatic interferometric sar configurations, pp.650-652, 2002.

C. [. Ludwig, C. Buck, M. Mangenot, and . Suess, Impact of new technologies on future space-borne radar design, IGARSS 2003. 2003 IEEE International Geoscience and Remote Sensing Symposium. Proceedings (IEEE Cat. No.03CH37477), pp.2137-2139, 2003.
DOI : 10.1109/IGARSS.2003.1294364

G. [. Lee, Deschamps : A uniform asymptotic theory of electromagnetic diffraction by a curved wedge, IEEE Trans. on Antennas Propagation, vol.24, pp.25-34, 1976.

]. J. Lee80 and . Lee, Digital image enhancement and noise filtering by use of local statistics, IEEE Trans. Pattern Anal. Machine Intell, vol.2, pp.165-168, 1980.

H. [. Loffeld, V. Nies, S. Peters, and . Knedlik, Models and useful relations for bistatic sar processing, IEEE Trans. on Geoscience and Remote Sensing, issue.10, pp.422031-2038, 2004.
DOI : 10.1109/igarss.2003.1294138

URL : http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.460.5876

J. [. Lehner and A. Schulz-stellenfleth, Niedermeier : Detection of extreme waves using synthetic aperture radar images

]. H. Bibliographie-[-mai01, . M. Maitre-[-mf53-]-p, H. Morse, . Feshbachmhkl02-]-b, J. Mojarrabi et al., Longstaff : Power budget study for passive target detection and imaging using secondary applications of gps signals in bistatic radar systems Sar imaging by w-k migration Spaceborne synthetic aperture radar (sar) systems : State of the art and future developments Combes : Application of iem and radiative transfer formulations for bistatic scattering of rough surfaces Extended chirp scaling algorithm for air-and spaceborne sar data processing in stripmap and scansar imaging modes Morchin : Radar Engineer's sourcebook. Artech House Introduction to uniform theory of diffraction. Artech House Rohling : Combination of lfmcw and fsk modulation principles for automotive radar systems BISSAT : A Bistatic SAR for Earth Observation Oceanographic application of spaceborne bistatic sar Optimal speckle reduction in polarimetric sar imagery, 11th GAAS Symposium Mienecke et H Kasilingam et S. Cloude : Estimating vegetation bias in polarimetric sar interferometry. Dans IGARSSNRT04] H. Nguyen, H. Roussel et W. Tabbara : Simulation of sar images of a forested area based on a 3d full wave model of wave scattering. Dans IGARSS, pp.449-451, 1953.

F. [. Nashashidi, . A. Ulabyogi91-]-j, S. Olivier, . J. Queganpie91-]-w, . J. Pierson et al., Ogilvy : Theory of Wave Scattering from Random Surfaces Ogor : Etude comparative de méthodes de filtrage de speckle et de segmentation en imagerie radaràradarà synthèse d'ouverture : applicationàapplicationà la région des polders du Mont St Understanding Synthetic Aperture Radar Images Artech House The theory and applications of ocean wave measuring systems at and below the sea surface, on land, from aircraft and from spacecraft Examination of forest plarimetric backscattering with coherent cylinder model Comparison of chirp scaling and wavenumber domain algorithms for airborne low frequency sar data processing Apport des données radaràradarà synthèse d'ouverture pour l'´ etude de la dynamique desécosystèmesdesécosystèmes forestiers III, mars 1999. [PS92] E. Pottier et J. Saillard : Fondements mathématiques de la polarimétrie et son application au domaine radar, Millimeter-wave polarimetric bistatic radar scattering from rough soil surfaces Thèse de doctoratPap91] A. Papoulis : Probability, Random Variables and Stochastic Processes . MC Graw-HillPro99] C. Proisy Thèse de doctorat Speckle filtering of sar images based on adaptative windowing. IEE Proceedings Vision, Image and Signal ProcessingRay77] L. Rayleigh : Theory of Sound : Surface and Internal Ocean Wave Observations in Satellite Oceanic Remote Sensing. B.Rig03] B.D. Rigling : Signal Processing Strategies for Bistatic Synthetic Aperture Thèse de doctorat, pp.788-790, 1877.

. D. Bibliographie-[-rm04-]-b, R. L. Rigling, and . Moses, Gtd-based scattering models for bistatic sar. Dans SPIE, Algorithms for Synthetic Aperture Radar Imagerie, pp.208-219, 2004.

]. S. Sil47 and . Silver, Microwave Antenna theory and design, 1947.

]. G. Sin50 and . Sinclair, The transmission and reception of elliptically polarized waves, Proc. IRE, pp.148-151, 1950.

]. M. Sko70, Skolnik : Radar Handbook, 1970.

G. [. Sun, H. Liu, W. M. Gu, and . Su, Application of the fractional fourier transform to moving target detection in airborne sar, IEEE Trans. on Aerospace and Electronic Systems, vol.38, issue.4, pp.1416-1424, 2002.

]. L. Soh02 and . Soh, Image processing techniques for describing sea ice features, pp.309-311, 2002.

]. A. Som96 and . Sommerfeld, A mathematische theorie der diffraction, Mathematical Annal, vol.47, pp.317-374, 1896.

]. M. Sou91 and . Soumekh, Bistatic synthetic aperture radar inversion with application in dynamic object imaging, IEEE Trans. on Signal Processing, vol.39, issue.9, pp.2044-2055, 1991.

]. M. Sou98 and . Soumekh, Wide-bandwidth continuous-wave monostatic/bistatic synthetic aperture radar imaging, International conference on image processing, pp.361-365, 1998.

]. M. Sou99 and . Soumekh, Synthetic Aperture Ra- dar Signal Processing Flores : Range-Doppler Radar Imaging and Motion Compensation, 1999.

]. R. Sto78 and . Stolt, Migration by fourier transform, Geophysics, vol.43, pp.23-48, 1978.

]. J. Str41 and . Stratton, Electromagnetic Theory, 1941.

S. [. Smith and . Weintraub, The Constants in the Equation for Atmospheric Refractive Index at Radio Frequencies, Proc. IRE, pp.1035-1037, 1953.
DOI : 10.1109/JRPROC.1953.274297

F. [. Touzi and . Charbonneau, Characterisation of symmetric scattering using polarimetric sars, pp.414-416, 2002.

K. [. Tur, J. W. Chin, and . Goodman, When is speckle noise multiplicative?, Applied Optics, vol.21, issue.7, pp.1157-1165, 1982.
DOI : 10.1364/AO.21.001157

]. K. Tom81 and . Tomiyasu, Conceptual performance of a satellite borne, wide swath synthetic aperture radar, IEEE Trans. on Geoscience and Remote Sensing, vol.19, issue.2, pp.108-116, 1981.

. Bibliographie-[-tvg-+-05-]-e, G. Trouvé, M. Vasile, P. Gay, J. M. Grussenmeyer et al., Combining optical and sar data to monitor temperate glaciers, IGARSS, 2005.

C. [. Ulaby and . Elachi, Radar Polarimetry for geoscience application, 1980.

T. [. Ulaby and R. T. Haddock, Fluctuation statistics of millimeter-wave scattering from distributed targets, IEEE Transactions on Geoscience and Remote Sensing, vol.26, issue.3, pp.268-281, 1988.
DOI : 10.1109/36.3030

H. [. Ulander and . Hellsten, Synthetic-aperture radar processing using fast factorized back-projection, IEEE Transactions on Aerospace and Electronic Systems, vol.39, issue.3, pp.760-776, 2003.
DOI : 10.1109/TAES.2003.1238734

F. [. Ulaby, B. Kouyate, T. Brisco, and . Williams, Textural information in sar images, IEEE Trans. on Geoscience and Remote Sensing, vol.20, pp.235-245, 1986.

R. [. Ulaby, A. K. Moore, and . Fung, Microwave Remote Sensing Active and Passive volume II, 1986.

W. [. Werness, L. Carrara, D. Joyce, and . Franczak, Moving target imaging algorithm for SAR data, IEEE Transactions on Aerospace and Electronic Systems, vol.26, issue.1, pp.57-67, 1990.
DOI : 10.1109/7.53413

]. M. Wei99 and . Weib, Ebira : Experimantal bistatic radar for air surveillance

]. N. Wil91 and . Willis, Bistatic Radar, 1991.

H. [. Wu and . Maitre, Smoothing seckled synthetic aperture radar images by using maximum homogeneous region filters, Optical Engineering, issue.8, pp.311785-1792, 1992.

D. [. Webb, N. J. Munson, and . Stacy, High-resolution planetary imaging via spotlight-mode synthetic aperture radar, Proceedings of 1st International Conference on Image Processing, pp.1571-1582, 1998.
DOI : 10.1109/ICIP.1994.413354

Z. [. Xiaoling, H. Bin, and . Shunji, The analysis of interferometric SAR imaging precision in the distributed micro-satellite system, IGARSS 2003. 2003 IEEE International Geoscience and Remote Sensing Symposium. Proceedings (IEEE Cat. No.03CH37477), pp.4477-4479, 2003.
DOI : 10.1109/IGARSS.2003.1295552

Y. [. Xiuqing and Y. Zhen, Ruliang : Improvement research on texture-detection in full-polarization sar image filter, IGARSS, pp.3973-3975, 2003.

. Zmg-+-03-]-v, D. Zavorotny, A. Masters, B. Gasiewski, S. Bartram et al., Seasonal polarimetric measurements of soil moisture using tower-based gps bistatic radar