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TH`ESE DE DOCTORAT DE L'UNIVERSITÉ PARIS 6 Spécialité ...

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166 BIBLIOGRAPHIE<br />

[22] J. Rissanen. Modeling by shortest data description. Automatica, 14 :465–471, 1978.<br />

[23] G. Schwartz. Estimating the dimension of a model. Ann. Stat., 6 :461–464, 1978.<br />

[24] M. Wax and T. Kailath. Detection of signals by information theoretic criteria. IEEE Trans. Acoust.,<br />

Speech, Signal Process., 33 :387–392, April 1985.<br />

[25] S.A. Vorobyov, A.B. Gershman, and Z.Q. Luo. Robust adaptive beamforming using worst-case<br />

performance optimization. IEEE Trans. Signal Process., 51, 2003.<br />

[26] O. Besson and F. Vincent. Performance analysis of beamformers using generalized loading of the<br />

covariance matrix in the presence of random steering vector errors. IEEE Trans. Signal Process., 53,<br />

2005.<br />

[27] R.G. Lorenz and S.P. Boyd. Robust minimum variance beamforming. IEEE Trans. Signal Process.,<br />

53, 2005.<br />

[28] J. li and editors P. Stoica. Robust Adaptive Beamforming. Wiley, 2006.<br />

[29] D.T. Hughes and J.G. McWhirter. Penalty function method for sidelobe control in least squares<br />

adaptive beamforming. SPIE Proc., 2563 :170–181, 1995.<br />

[30] G.M. Herbert. A new projection based algorithm for low sidelobe pattern synthesis in adaptive<br />

arrays. Radar 97, pages 396–400, October 1997.<br />

[31] L.E. Brennan, J.D. Mallet, and I.S. Reed. Rapid convergence rates in adaptive arrays. IEEE Trans.<br />

Aerospace and Electron. Syst., 10 :853–863, November 1974.<br />

[32] O.L Frost. An algorithm for linearly constrained adaptive array processing. Proc. IEEE, 60 :926–935,<br />

August 1972.<br />

[33] M. Zatman. How narrow is narrowband IEE Proc. Radar, Sonar Navig., 145 :85–91, April 1998.<br />

[34] T. Qin, H. Zhang, and X. Zhang. Criterion for narrowband beamforming. IEE Electronic Letters,<br />

40 :846–847, July 2004.<br />

[35] L.C. Godara and M.R.S. Jahromi. Limitations and capabilities of frequency domain broadband<br />

constrained beamforming schemes. IEEE Trans. Signal Process., 47 :2386–2395, September 1999.<br />

[36] C.L. Koh, S. Weiss, and W. Liu. A comparison of adaptive beamforming implementations for wideband<br />

scenarios. September 2005.<br />

[37] H. Duan, B.P. Ng, and L.M. See. Broadband beamforming using TDL-form IIR filters. IEEE Trans.<br />

Signal Process., 55 :990–1002, March 2007.<br />

[38] H.B. Lee. Eigenvalues and eigenvectors of covariance matrices for signals closely spaced in frequency.<br />

IEEE Trans. Signal Process., 40 :2518–2535, October 1992.<br />

[39] L.C. Godara. Application of the fast Fourier transform to broadband beamforming. J. Acoust. Soc.<br />

Am., 98 :230–239, July 1995.<br />

[40] P.P. Vaidyanathan. Multirate Systems and Filter Banks. Prentice Hall, Englewood Cliffs, NJ, 1993.<br />

[41] Q-G. Liu et al. Simple design of oversampled uniform DFT filter banks with applications to subband<br />

acoustic echo cancellation. Signal Processing, 80 :831–847, 2000.<br />

[42] R.E. Crochiere and L.R. Rabiner. Multirate Digital Signal Processing. Prentice Hall, Englewood<br />

Cliffs, NJ, 1983.<br />

[43] J.D. Johnston. A filter family designed for use in quadrature mirror filter banks. pages 291–294,<br />

April 1980.<br />

[44] P. Tilli. Asymptotic spectral distributions of Toeplitz-related matrices. Prentice Hall, Englewood<br />

Cliffs, NJ, 1983.<br />

[45] M. Miranda and P. Tilli. Asymptotic spectra of hermitian block Toeplitz matrices and preconditioning<br />

results. SIAM J. Matrix Anal. Applic., 21 :867–881, 2000.

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