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Principles of Modern Radar - Volume 2 1891121537

Principles of Modern Radar - Volume 2 1891121537

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450 CHAPTER 9 Adaptive Digital Beamforming[12] Rabideau, D.J., “Hybrid Mitigation <strong>of</strong> Distortion in Digital Arrays,” in IEEE International<strong>Radar</strong> Conference, pp. 236–241, May 9–12, 2005.[13] Lauritzen, K.C., et al., “High-Dynamic-Range Receivers for Digital Beam Forming <strong>Radar</strong>Systems,” In Proceedings <strong>of</strong> the IEEE <strong>Radar</strong> Conference, Boston, MA, pp. 55–60, April 17–20, 2007.[14] Van Veen, B., “An Analysis <strong>of</strong> Several Partially Adaptive Beamformer Designs,” IEEE Transactionson ASSP, vol. 37, no. 2, pp. 192–203, February 1989.[15] Nickel, U., “Subarray Configurations for Interference Suppression with Phased Array <strong>Radar</strong>,”in Proceedings <strong>of</strong> the International Conference on <strong>Radar</strong>, Paris, pp. 82–86, 1989.[16] Johannisson, B. and Steen, L., “Partial Digital Beamforming Using Antenna SubarrayDivision,” in Proceedings <strong>of</strong> the International Conference on <strong>Radar</strong>, Paris, pp. 63–67,1994.[17] Ferrier, J., Carrara, B., and Granger, P., “Antenna Subarray Architectures and Anti-jammingConstraints,” in Proceedings <strong>of</strong> the International Conference on <strong>Radar</strong>, Paris, pp. 466–469,1994.[18] Nickel, U., “Subarray Configurations for Digital Beamforming with Low Sidelobes and AdaptiveInterference Suppression,” in Proceedings <strong>of</strong> the IEEE International <strong>Radar</strong> Conference,pp. 714–719, 1995.[19] Combaud, M., “Adaptive Processing at the Subarray Level,” Aerospace Science and Technology,no. 2, pp. 93–105, 1999.[20] Zatman, M., “Digitization Requirements for Digital <strong>Radar</strong> Arrays,” in Proceedings <strong>of</strong> theIEEE <strong>Radar</strong> Conference, pp. 163–168, May 1–3, 2001.[21] Bailey, C.D. and Aalfs, D.D., “Design <strong>of</strong> Digital Beamforming Subarrays for a Multifunction<strong>Radar</strong>,” in Proceedings <strong>of</strong> the International <strong>Radar</strong> Conference, Bordeaux, France, October2009.[22] Lin, C.-T. and Ly, H., “Sidelobe Reduction through Subarray Overlapping for WidebandArrays,” Proceedings <strong>of</strong> the IEEE <strong>Radar</strong> Conference, May 1–3, 2001.[23] Brennan, L.E. and Reed, I.S., “Theory <strong>of</strong> Adaptive <strong>Radar</strong>,” IEEE Transactions on AES,vol. 9, pp. 237–252, March 1973.[24] Frost, O.L., “An Algorithm for Linearly Constrained Adaptive Array Processing,” Proceedings<strong>of</strong> the IEEE, vol. 60, pp. 124–133, August 1972.[25] Griffiths, L.J. and Jim, C.W., “An Alternative Approach to Linearly Constrained AdaptiveBeamforming,” IEEE Transactions AP-30, pp. 27–34, January 1982.[26] Er, M.H. and Cantoni, A., “Derivative Constraints for Broad-Band Element Space AntennaArray Processors,” IEEE Transactions on ASSP, vol. 31, pp. 1378–1393, December 1983.[27] Buckley, K.M. and Griffiths, L.J., “An Adaptive Generalized Sidelobe Canceller with DerivativeConstraints,” IEEE Transactions on AP, vol. 34, pp. 311–319, March 1986.[28] Buckley, K.M., “Spatial/Spectral Filtering with Linearly Constrained Minimum VarianceBeamformers,” IEEE Trans. ASSP, vol. 35, pp. 249–266, March 1987.[29] Reed, I.S., Mallett, J.D., and Brennan, L.E., “Rapid Convergence Rate in Adaptive Arrays,”IEEE Transactions on AES, vol. 10, pp. 853–863, November 1974.[30] Boroson, D.M., “Sample Size Considerations for Adaptive Arrays,” IEEE Transactions onAES, vol. 16, pp. 446–451, July 1980.[31] Carlson, B.D., “Covariance Matrix Estimation Errors and Diagonal Loading in AdaptiveArrays,” IEEE Transactions on AES, vol. 24, pp. 397–401, July 1988.

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