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Principles of Modern Radar - Volume 2 1891121537

Principles of Modern Radar - Volume 2 1891121537

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256 CHAPTER 6 Spotlight Synthetic Aperture <strong>Radar</strong>[4] Walter G. Carrara, Ron S. Goodman, and Ronald M. Majewski. Spotlight Synthetic Aperture<strong>Radar</strong> Signal Processing Algorithms. Artech House, 1995.[5] Charles V. Jakowatz, Daniel E. Wahl, Paul H. Eichel, Dennis C. Ghiglia, and Paul A. Thompson.Spotlight-Mode Synthetic Aperture <strong>Radar</strong>: A Signal Processing Approach. Kluwer AcademicPublishers, 1996.[6] A. V. Oppenheim and R. W. Schafer. Discrete-Time Signal Processing. Prentice Hall, 2009.[7] David C. Munson, Jr., James Dennis O’Brien, and W. Kenneth Jenkins. A tomographic formulation<strong>of</strong> spotlight-mode synthetic aperture radar. Proceedings <strong>of</strong> the IEEE, 71(8):917–925,August 1983.[8] David C. Munson, Jr. and Robert L. Visentin. A signal processing view <strong>of</strong> strip-mappingsynthetic aperture radar. IEEE Transactions <strong>of</strong> Acoustics, Speech, and Signal Processing,37(12):2131–2147, December 1989.[9] R. N. Bracewell. The Fourier Transform and Its Applications. McGraw-Hill Inc., 1965.[10] Arch W. Naylor and George R. Sell. Linear Operator Theory in Engineering and Science.Springer-Verlag, 1982.[11] T. K. Moon and W. C. Stirling. Mathematical Methods and Algorithms for Signal Processing.Prentice Hall, 1999.[12] Fredric J. Harris. On the use <strong>of</strong> windows for harmonic analysis with the discrete Fouriertransform. Proceedings <strong>of</strong> the IEEE, 66(1), January 1978.[13] R. Haberman. Applied Partial Differential Equations with Fourier Series and Boundary ValueProblems. Pearson Prentice Hall, 2004.[14] Mark A. Richards, James A. Scheer, and William A. Holm, editors. <strong>Principles</strong> <strong>of</strong> <strong>Modern</strong><strong>Radar</strong>: Basic <strong>Principles</strong>. SciTech Publishing, Inc., 2010.[15] C. H. Casteel, L. A. Gorham, M. J. Minardi, S. Scarborough, and K. D. Naidu. A challengeproblem for 2D/3D imaging <strong>of</strong> targets from a volumetric data set in an urban environment.Proceedings <strong>of</strong> the SPIE 6568, April 2007.[16] D. A. Cook and D. P. Campbell. Synthetic aperture imaging via backpropagation using commoditygraphics processors. In Proceedings <strong>of</strong> the International Conference on SyntheticAperture Sonar and Synthetic Aperture <strong>Radar</strong>. Institute <strong>of</strong> Acoustics, 2010.[17] David W. Hawkins. Synthetic Aperture Imaging Algorithms: with application to wide bandwidthsonar. PhD thesis, Department <strong>of</strong> Electrical and Electronic Engineering, University <strong>of</strong>Canterbury, Christchurch, New Zealand, 1996.[18] J. G. Mehlis. Synthetic aperture radar range-azimuth ambiguity design and constraints. IEEEInternational <strong>Radar</strong> Conference, pages 143–152, 1980.[19] C. Elachi. Spaceborne <strong>Radar</strong> Remote Sensing. IEEE Press, 1987.[20] S. Musman, D. Kerr, and C. Bachman. Automatic recognition <strong>of</strong> isar ship images. IEEETransactions on Aerospace and Electronic Systems, 32(4), October 1996.[21] Armin W. Doerry. Ship dynamics for maritime ISAR imaging. Technical report, Sandia NationalLaboratories, 2008.[22] David C. Munson, Jr. and Jorge L. C. Sanz. Image reconstruction from frequency-<strong>of</strong>fset fourierdata. Proceedings <strong>of</strong> the IEEE, 72(6):661–669, June 1984.[23] D. A. Cook and D. C. Brown. Analysis <strong>of</strong> shadow contrast for synthetic aperture sonar imagery.In Proceedings <strong>of</strong> the International Conference on Synthetic Aperture Sonar and SyntheticAperture <strong>Radar</strong>. Institute <strong>of</strong> Acoustics, 2010.

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