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碩士學(xué)位論文開題報告-雙基地前視sar頻域成像算法研究-文庫吧資料

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【正文】 ] I. Walterscheid, T. Espeter, J. Klare, and A. Brenner, Bistatic spaceborneairborne forwardlooking SAR, EUSAR 2010., Aachen. Germany, pp. 986989, 2010.[3] J. Balke, Field test of bistatic forwardlooking synthetic aperture radar, IEEE International Radar conference., May 2005, Virginia, USA, , 2005.[4] 王浩丞. 雙基前視合成孔徑雷達(dá)成像算法研究: [碩士學(xué)位論文]. 成都: 電子科技大學(xué), 2010.[5] 曾濤. 雙基地合成孔徑雷達(dá)發(fā)展現(xiàn)狀與趨勢分析. 雷達(dá)學(xué)報. 1(4): 329341, 2012.[6] A. K. Lohner, Improved azimuthal resolutional of forwardlooking SAR by sophisticated antenna illumination function design, Proc. Inst. Elect. Sonar Navig, vol. 145, no. 2, pp. 128134, 1998.[7] S. Dai, M. Liu, Y. Sun, and W. Wiesbeck, The latest development of high resolution imaging for forward looking SAR with multiple receiving antennas, Proc. IGARSS, Sydney, Australia, vol. 3, pp. 14331435, 2001.[8] G. Krieger, J. Mittermayer, M. Wendler, F. Witte, and A. Moreira, SIREVSector imaging radar for enhanced vision, Proc. Int. Symp. ISPA. 2001, pp. 377382, 2001.[9] J. J. Wu, Y. L. Huang, J. Y. Yang, et al. First result of bistatic forwardlooking SAR with stationary transmitter, Proc. IGARSS, Vancouver, Canada, Jul. 2011, pp. 1223–1226, 2011.[10] J. J. Wu, J. Y. Yang, Y. L. Huang, H. G. Yang, H. C. Wang, Bistatic forwardlooking SAR: Theory and challenges, Proc. IEEE Radar Conf., Pasadena, USA, May 2009, pp. 1–4, 2009.[11] H. Liu, J. X. Zhou, Q. Fu, Performance analysis of toward ground forwardlooking bistatic SAR, 2011 APSAR, pp. 14, 2011.[12] Y. S. Yi, L. R. Zhang, Y. Li, et al. Range Doppler algorithm for bistatic missile borne forwardlooking SAR, 2009 APSAR, pp. 960963, 2009.[13] O Loffeld, H Nies, V. Peters, and S. Knedlik, Models and useful relations for bistatic SAR processing, IEEE Trans. Geosci. Remote Sens, vol. 42, no. 10, pp. 2031–2038, 2004.[14] R. Wang, O. Loffeld, Q. UlAnn, et al. A bistatic point target reference spectrum for general bistatic SAR processing, IEEE Geosci. Remote Sens. Lett., vol. 5, no. 3, pp. 517–521, 2008.[15] R. Wang, O. Loffeld, Y. L Neo, et al. Extending Loffeld’s bistatic formula for the general bistatic SAR configuration, IET Proc. Radar Sonar Navigation, vol. 4, Iss. 1, pp. 74–84, 2010.[16] Y. L. Neo, F. Wong, and I. G. Cumming, A twodimensional spectrum for bistatic SAR processing using series reversion, IEEE Geosci. Remote Sens. Lett., vol. 4, no. 1, pp. 93–96, 2007.[17] Y L Neo, F H Wong, I G Cumming. A parison of point target spectra derived for bistatic SAR processing, IEEE Transactions on Geoscience Remote Sensing, vol. 46, no. 9, pp. 24812492, 2008.[18] R. Wang, Y. K. Deng, O. Loffeld, et al. Processing the azimuthvariant bistatic SAR data by using monostatic imaging algorithms based on twodimensional principle of stationary phase, IEEE Trans. Geosci. Remote Sens .,vol. 49, no. 10, pp. 35043520, Apr. 2011.[19] J. Li, S. S. Zhang, J. F. Chang, Bistatic forwardlooking SAR imaging based on twodimensional principle of stationary phase, MMWCST 2012 ,pp. 107110, 2012.[20] X. Qiu, D. Hu, and C. Ding, Some re?ections on bistatic SAR of forwardlooking con?guration, IEEE Geosci. Remote Sens. Lett., vol. 5, no. 4, pp. 735739, 2008.[21] S. S. Zhang, J. Li, Forwardlooking bistatic SAR imaging based on high order range equation and high order phase pensation, Journal of Electromagnetic Waves and Application ,vol. 26, Nos. 1718, pp. 23042314, 2012.[22] X. L. Qiu, D. H. Hu, C. B. Ding, Nonlinear chirp scaling algorithm for one
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