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  • Cited by 227
Publisher:
Cambridge University Press
Online publication date:
August 2012
Print publication year:
2012
Online ISBN:
9781139095174

Book description

With a focus on developing computational algorithms for examining waveform design in diverse active sensing applications, this guide is ideal for researchers and practitioners in the field. The three parts conveniently correspond to the three categories of desirable waveform properties: good aperiodic correlations, good periodic correlations and beampattern matching. The book features various application examples of using the newly designed waveforms, including radar imaging, channel estimation for communications, an ultrasound system for breast cancer treatment and covert underwater communications. In addition to numerical results, the authors present theoretical analyses describing lower bounds or limitations of performance. Focusing on formulating practical problems mathematically and solving the mathematical problems using efficient and effective optimization techniques, the text pays particular attention to developing easy-to-use computational approaches. Most algorithms are accompanied by a table clearly detailing iteration steps and corresponding MATLAB codes are available on the companion website.

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Contents

References
References
Abramovich, Y. I. & Frazer, G. J. [2008], ‘Bounds on the volume and height distributions for the MIMO radar ambiguity function’, IEEE Signal Processing Letters 15, 505–508.
Ackroyd, M. H. & Ghani, F. [1973], ‘Optimum mismatched filters for sidelobe suppression’, IEEE Transactions on Aerospace and Electronic Systems 9(2), 214–218.
Barker, R. H. [1953], ‘Group synchronizing of binary digital systems” Communication Theory, W., Jackson (ed.), Butterworths, London.
Benedetto, J. J., Konstantinidis, I. & Rangaswamy, M. [2009], ‘Phase-coded waveforms and their design: The role of the ambiguity function’, IEEE Signal Processing Magazine 26(1), 22–31.
Blackmon, F., Sozer, E. M., Stojanovic, M. & Proakis, J. [2002], ‘Performance comparison of RAKE and hypothesis feedback direct sequence spread spectrum techniques for underwater communication applications’, MTS/IEEE OCEANS'02 pp. 594–603.
Bliss, D. W. & Forsythe, K. W. [2003], ‘Multiple-input multiple-output (MIMO) radar and imaging: degrees of freedom and resolution’, 37th Asilomar Conf on Signals, Systems and Computers, Pacific Grove, CA pp. 54–59.
Blunt, S. D. & Gerlach, K. [2006], ‘Adaptive pulse compression via MMSE estimation’, IEEE Transactions on Aerospace and Electronic Systems 42(2), 572–584.
Bonami, A., Garrigos, G. & Jaming, P. [2007], ‘Discrete radar ambiguity problems’, Applied and Computational Harmonic Analysis 23, 388–414.
Borwein, P. & Ferguson, R. [2005], ‘Polyphase sequences with low autocorrelation’, IEEE Transactions on Information Theory 51(4), 1564–1567.
Boyd, S. & Vandenberghe, L. [2004], Convex Optimization, Cambridge University Press, Cambridge.
Brennan, D. [1959], ‘Linear diversity combining techniques’, Proc. IRE (6), 1075–1102.
Brenner, A. R. [1998], ‘Polyphase Barker sequences up to length 45 with small alphabets’, Electronics Letters 34(16), 1576–1577.
Capon, J. [1969], ‘High resolution frequency-wavenumber spectrum analysis’, Proceedings of the IEEE 57, 1408–1418.
Carbonelli, C., Vedantam, S. & Mitra, U. [2007], ‘Sparse channel estimation with zero tap detection’, IEEE Transactions on Wireless Communications 6(5), 1743–1753.
Cardone, G., Cincotti, G. & Pappalardo, M. [2002], ‘Design of wide-band arrays for low side-lobe level beam patterns by simulated annealing’, IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control 49(8).
Chen, C.-Y. & Vaidyanathan, P. P. [2008], ‘MIMO radar ambiguity properties and optimization using frequency-hopping waveforms’, IEEE Transactions on Signal Processing 56(12), 5926–5936.
Chu, D. C. [1972], ‘Polyphase codes with good periodic correlation properties (correspondence)’, IEEE Transactions on Information Theory 18(4), 531–532.
Costas, J. P. [1984], ‘A study of a class of detection waveforms having nearly ideal range-doppler ambiguity properties’, Proceedings of the IEEE 72(8), 996–1009.
DeLong, D. F. Jr. & Hofstetter, E. M. [1967], ‘On the design of optimum radar waveforms for clutter rejection’, IEEE Transactions on Information Theory 13(3), 454–463.
DeLong, D. F. Jr. & Hofstetter, E. M. [1969], ‘The design of clutter-resistant radar waveforms with limited dynamic range’, IEEE Transactions on Information Theory 15(3), 376–385.
Deng, H. [2004], ‘Polyphase code design for orthogonal netted radar systems’, IEEE Transactions on Signal Processing 52(11), 3126–3135.
Diaz, V., Urena, J., Mazo, M., Garcia, J., Bueno, E. & Hernandez, A. [1999], ‘Using Golay complementary sequences for multi-mode ultrasonic operation’, IEEE 7th International Conf on Emerging Technologies and Factory Automation, UPC Barcelona, Spain.
Diederich, C. J. & Hynynen, K. [1999], ‘Ultrasound technology for hyperthermia’, Ultrasound in Medicine and Biology 25(6), 871–887.
Dolph, C. L. [1946], ‘A current distribution for broadside arrays which optimizes the relationship between beam width and side-lobe level’, Proceedings of the IRE 34(6), 335–348.
Elliott, R. [1975], ‘Design of line source antennas for narrow beamwidth and asymmetric low sidelobes’, IEEE Transactions on Antennas and Propagation 23(1), 100–107.
Falk, M. H. & Issels, R. D. [2001], ‘Hyperthermia in oncology’, International Journal of Hyperthermia 17(1), 1–18.
Fan, P. & Darnell, M. [1997], ‘Construction and comparison of periodic digital sequence sets’, IEE Proceedings Communications 144(6), 361–366.
Fan, P. & Mow, W. H. [2004], ‘On optimal training sequence design for multiple-antenna systems over dispersive fading channels and its extensions (correspondence)’, IEEE Transactions on Vehicular Technology 53(5), 1623–1626.
Fan, P., Suehiro, N., Kuroyanagi, N. & Deng, X. [1999], ‘Class of binary sequences with zero correlation zone’, IET Electronics Letters 35(10), 777–779.
Fenn, A. J., Sathiaseelan, V., King, G. A. & Stauffer, P. R. [1996], ‘Improved localization of energy deposition in adaptive phased-array hyperthermia treatment of cancer’, The Lincoln Laboratory Journal 9(2), 187–195.
Fienup, J. R. [1982], ‘Phase retrieval algorithms: a comparison’, Applied Optics 21(15), 2758–2769.
Fishler, E., Haimovich, A., Blum, R., Chizhik, D., Cimini, L. & Valenzuela, R. [2004], ‘MIMO radar: an idea whose time has come’, IEEE Radar Conf, Philadelphia, PA pp. 71–78.
Fishler, E., Haimovich, A., Blum, R., Cimini, L., Chizhik, D. & Valenzuela, R. [2004], ‘Performance of MIMO radar systems: advantages of angular diversity’, 38th Asilomar Conf on Signals, Systems and Computers, Pacific Grove, CA pp. 305–309.
Fishler, E., Haimovich, A., Blum, R., Cimini, L., Chizhik, D. & Valenzuela, R. [2006], ‘Spatial diversity in radars - models and detection performance’, IEEE Transactions on Signal Processing 54(3), 823–838.
Fletcher, R. [1970], ‘A new approach to variable metric algorithms’, The Computer Journal 13(3), 317–322.
Forsythe, K.W. & Bliss, D.W. [2005], ‘Waveform correlation and optimization issues for MIMO radar’, 39th Asilomar Conf on Signals, Systems and Computers, Pacific Grove, CA pp. 1306–1310.
Frazer, G., Abramovich, Y. & Johnson, B. [2007], ‘Spatially waveform diverse radar: Perspectives for high frequency OTHR’, IEEE Radar Conf, Boston, MA, USA pp. 385–390.
Freedman, A. & Levanon, N. [1994], ‘Properties of the periodic ambiguity function’, IEEE Transactions on Aerospace and Electronic Systems 30(3), 938–941.
Freedman, A., Levanon, N. & Gabbay, S. [1995], ‘Perfect periodic correlation sequences’, Signal Processing 41(2), 165–174.
Friedlander, B. [2007], ‘Waveform design for MIMO radars’, IEEE Transactions on Aerospace and Electronic Systems 43(3), 1227–1238.
Friese, M. & Zottmann, H. [1994], ‘Polyphase Barker sequences up to length 31’, Electronics Letters 30(23), 1930–1931.
Fuhrmann, D. R. & San Antonio, G. [2004], ‘Transmit beamforming for MIMO radar systems using partial signal correlation’, 38th Asilomar Conf on Signals, Systems and Computers, Pacific Grove, CA pp. 295–299.
Fuhrmann, D. R. & San Antonio, G. [2008], ‘Transmit beamforming for MIMO radar systems using signal cross-correlation’, IEEE Transactions on Aerospace and Electronic Systems 44(1), 1–16.
Gerchberg, R. W. & Saxton, W. O. [1972], ‘A practical algorithm for the determination of the phase from image and diffraction plane pictures’, Optik(Stuttgart) 35, 237–246.
Getz, B. & Levanon, N. [1995], ‘Weight effects on the periodic ambiguity function’, IEEE Transactions on Aerospace and Electronic Systems 31(1), 182–193.
Gianfelice, D., Khiat, A., Amara, M., Belblidia, A. & Boulanger, Y. [2003], ‘MR imaging-guided focused US ablation of breast cancer: histopathologic assessment of effectiveness-initial experience’, Radiology 227, 849–855.
Gladkova, I. & Chebanov, D. [2004], ‘On the synthesis problem for a waveform having a nearly ideal ambiguity functions’, International Conf on Radar Systems, Toulouse, France.
Gold, R. [1967], ‘Optimal binary sequences for spread spectrum multiplexing’, IEEE Transactions on Information Theory IT-13, 619–621.
Gold, R. [1968], ‘Maximal recursive sequences with 3-valued recursive cross-correlation functions’, IEEE Transactions on Information Theory 14(1), 154–156.
Golub, G. H. & Van Loan, C. F. [1984], Matrix Computations, Johns Hopkins University Press, Baltimore, MD.
Guey, J. C. & Bell, M. R. [1998], ‘Diversity waveform sets for delay-doppler imaging’, IEEE Transactions on Information Theory 44(4).
Guo, B. & Li, J. [2008], ‘Waveform diversity based ultrasound system for hyperthermia treatment of breast cancer’, IEEE Transactions on Biomedical Engineering 55(2), 822–826.
Guo, B., Wang, Y., Li, J., Stoica, P. & Wu, R. [2006], ‘Microwave imaging via adaptive beamforming methods for breast cancer detection’, Journal of ElectromagneticWaves and Applications 20(1), 53–63.
Han, Y. K. & Yang, K. [2009], ‘New m-ary sequence families with low correlation and larger size’, IEEE Transactions on Information Theory 55(4), 1815–1823.
Haykin, S. [2006], ‘Cognitive radar: a way of the future’, IEEE Signal Processing Magazine 23(1), 30–40.
Headrick, J. M. & Skolnik, M. I. [1974], ‘Over-the-horizon radar in the HF band’, Proceedings of the IEEE 62(6), 664–673.
Høholdt, T. [2006], 'The merit factor problem for binary sequences.” Applied Algebra, Algebraic Algorithms and Error-Correcting Codes, M., Fossorier, H., Imai, S., Lin, and A., Poli, (eds.), Vol. 3857, Lecture Notes in Computer Science, pp. 51–59, Springer-Verlag, Heidelberg.
Hui, H. T. [2007], ‘Decoupling methods for the mutual coupling effect in antenna arrays: a review’, Recent Patents on Engineering 1(2), 187–193.
Hursky, P., Porter, M. B. & Siderius, M. [2006], ‘Point-to-point underwater acoustic communications using spread-spectrum passive phase conjugation’, Journal of the Acoustical Society of America 120(1), 247–257.
Iltis, R. A. & Fuxjaeger, A. W. [1991], ‘A digital DS spread-spectrum receiver with joint channel and Doppler shift estimation’, IEEE Transactions on Communications 39, 1255–1267.
Jakowatz, C. V. Jr., Wahl, D. E., Eichel, P. H., Ghiglia, D. C. & Thompson, P. A. [1996], Spotlight-Mode Synthetic Aperture Radar: A Signal Processing Approach, Kluwer Academic Publishers, Norwell, MA.
Jedwab, J. [2005], ‘A survey of the merit factor problem for binary sequences’ Sequences and Their Applications – SETA 2004, T., Helleseth, D., Sarwate, H. Y., Song, and K., Yang, Eds., Vol. 3486, Lecture Notes in Computer Science, pp. 30–55, Springer-Verlag, Heidelberg.
Kasami, T. [1966], ‘Weight distribution formula for some class of cyclic codes’, Report 0475236 at Coordinated Science Lab, University of Illinois at Urbana-Champaign.
Katsibas, T. K. & Antonopoulos, C. S. [2004], ‘A general form of perfectly matched layers for three-dimensional problems of acoustic scattering in lossless and lossy fluid media’, IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control 51(8), 964–972.
Kay, S. [2007], ‘Optimal signal design for detection of Gaussian point targets in stationary Gaussian clutter/reverberation’, IEEE Journal of Selected Topics in Signal Processing 1(1), 31–41.
Khan, H. A., Zhang, Y., Ji, C., Stevens, C. J., Edwards, D. J. & O'Brien, D. [2006], ‘Optimizing polyphase sequences for orthogonal netted radar’, IEEE Signal Processing Letters 13(10), 589–592.
Kilfoyle, D. B. & Baggeroer, A. B. [2000], ‘The state of the art in underwater acoustic telemetry’, IEEE Journal of Oceanic Engineering 25, 4–27.
Kremkau, F. W. [1993], Diagnostic Ultrasound: Principles and Instruments, W. B. Saunders, Philadelphia, PA.
Kretschmer, F. F. Jr. & Gerlach, K. [1991], ‘Low sidelobe radar waveforms derived from orthogonal matrices’, IEEE Transactions on Aerospace and Electronic Systems 27(1), 92–102.
Kruger, R. A., Kopecky, K. K., Aisen, A. M., Reinecke, D. R., Kruger, G. A. & Kiser, W. L. [1999], ‘Thermoacoustic CT with radio waves: a medical imaging paradigm’, Radiology 211(1), 275–278.
Kumar, P. V. & Moreno, O. [1991], ‘Prime-phase sequences with periodic correlation properties better than binary sequences’, IEEE Transactions on Information Theory 37(3), 603–616.
Lebret, H. & Boyd, S. [1997], ‘Antenna array pattern synthesis via convex optimization’, IEEE Transactions on Signal Processing 45(3), 526–532.
Levanon, N. & Mozeson, E. [2004], Radar Signals, Wiley, NY.
Li, J. & Stoica, P. [1996], ‘An adaptive filtering approach to spectral estimation and SAR imaging’, IEEE Transactions on Signal Processing 44(6), 1469–1484.
Li, J. & Stoica, P. [2009], MIMO Radar Signal Processing, John Wiley & Sons, Inc., Hoboken, NJ.
Li, J., Stoica, P., Xu, L. & Roberts, W. [2007], ‘On parameter identifiability of MIMO radar’, IEEE Signal Processing Letters 14(12), 968–971.
Li, J., Stoica, P. & Zheng, X. [2008], ‘Signal synthesis and receiver design for MIMO radar imaging’, IEEE Transactions on Signal Processing 56(8), 3959–3968.
Li, J., Xie, Y., Stoica, P., Zheng, X. & Ward, J. [2007], ‘Beampattern synthesis via a matrix approach for signal power estimation’, IEEE Transactions on Signal Processing 55(12), 5643–5657.
Lin, Z. [1988], ‘Wideband ambiguity function of broadband signals’, Acoustical Society of America 83(6), 2108–2116.
Lindenfeld, M. J. [2004], ‘Sparse frequency transmit and receive waveform design’, IEEE Transactions on Aerospace and Electronic Systems 40(3).
Ling, J., He, H., Li, J., Roberts, W. & Stoica, P. [2010], ‘Covert underwater acoustic communications: Transceiver structures, waveform designs and associated performances’, OCEANS Conf, Seattle, WA, USA.
Ling, J., Tan, X., Yardibi, T., Li, J., He, H. & Nordenvaad, M. L. [2009], ‘Enhanced channel estimation and efficient symbol detection in MIMO underwater acoustic communications’, 43th Asilomar Conf on Signals, Systems and Computers, Pacific Grove, CA.
Ling, J., Yardibi, T., Su, X., He, H. & Li, J. [2009], ‘Enhanced channel estimation and symbol detection for high speed multi-input multi-output underwater acoustic communications’, Journal of the Acoustical Society of America 125(5), 3067–3078.
Ling, J., Zhao, K., Li, J. & Nordenvaad, M. [2011], ‘Multi-input multi-output underwater communications over sparse and frequency modulated acoustic channels’, Journal of the Acoustical Society of America 130(1), 249–262.
Mailloux, R. J. [1982], ‘Phased array theory and technology’, Proceedings of the IEEE 70(3), 246–291.
Meaney, P. M., Fanning, M. W., Li, D., Poplack, S. P. & Paulsen, K. D. [2000], ‘A clinical prototype for active microwave imaging of the breast’, IEEE Transactions on Microwave Theory and Techniques 48(11), 1841–1853.
Moore, I. C. & Cada, M. [2004], ‘Prolate spheroidal wave functions, an introduction to the slepian series and its properties’, Applied and Computational Harmonic Analysis 16(3), 208–230.
Oppermann, J. & Vucetic, B. S. [1997], ‘Complex spreading sequences with a wide range of correlation properties’, IEEE Transactions on Communications 45(3), 365–375.
Orsi, R., Helmke, U. & Moore, J. B. [2004], ‘A Newton-like method for solving rank constrained linear matrix inequalities’, 43rd IEEE Conf on Decision and Control pp. 3138–3144.
Palmese, M., Bertolotto, G., Pescetto, A. & Trucco, A. [2007], ‘Spread spectrum modulation for acoustic communication in shallow water channel’, MTS/IEEE OCEANS'07 pp. 1–4.
Patton, L. K. & Rigling, B. D. [2008], ‘Modulus constraints in adaptive radar waveform design’, IEEE Radar Conf, Rome, Italy.
Proakis, J. G. [2001], Digital Communications, Fourth edition, McGraw-Hill Inc.
Pursley, M. B. [1977], ‘Performance evaluation for phase-coded spread-spectrum multiple-access communication–part I: System analysis’, IEEE Transactions on Communications (8), 795–799.
Ritcey, J. A. & Griep, K. R. [1995], ‘Coded shift keyed spread spectrum for ocean acoustic telemetry’, MTS/IEEE OCEANS'95 pp. 1386–1391.
Roberts, W., Stoica, P., Li, J., Yardibi, T. & Sadjadi, F. [2010], ‘Iterative adaptive approaches to MIMO radar imaging’, IEEE Journal of Selected Topics in Signal Processing: Special Issue on MIMO Radar and Its Applications 4(1), 5–20.
Robey, F. C., Coutts, S., Weikle, D. D., McHarg, J. C. & Cuomo, K. [2004], ‘MIMO radar theory and experimental results’, 38th Asilomar Conf on Signals, Systems and Computers, Pacific Grove, CA pp. 300–304.
Rummler, W. D. [1967], ‘A technique for improving the clutter performance of coherent pulse train signals’, IEEE Transactions on Aerospace and Electronic Systems 3(6), 898–906.
Salzman, J., Akamine, D. & Lefevre, R. [2001], ‘Optimal waveforms and processing for sparse frequency UWB operation’, IEEE Radar Conf, Atlanta, GA pp. 105–110.
San Antonio, G. & Fuhrmann, D. R. [2005], ‘Beampattern synthesis for wideband MIMO radar systems’, 1st IEEE International Workshop on Computational Advances in Multi-Sensor Adaptive Processing, Puerto Vallarta, Mexico pp. 105–108.
Sarwate, D. V. [1979], ‘Bounds on crosscorrelation and autocorrelation of sequences’, IEEE Transactions on Information Theory IT-25(6), 720–724.
Sarwate, D. V. [1999], ‘Meeting the Welch bound with equality’, Sequences and Their Applications (Proceedings of SETA '98) pp. 79–102, Springer, London.
Sarwate, D. V. & Pursley, M. B. [1980], ‘Crosscorrelation properties of pseudorandom and related sequences’, Proceedings of the IEEE 68(5), 593–619.
Scholnik, D. R. & Coleman, J. O. [2000], ‘Formulating wideband array-pattern optimizations’, Proceeding of IEEE International Conf. on Phased Array Systems and Technology pp. 489–492.
Schotten, H. D. & Lüke, H. D. [2005], ‘On the search for low correlated binary sequences’, International Journal of Electronics and Communications 59(2), 67–78.
Sharma, R. [2010], ‘Analysis of MIMO radar ambiguity functions and implications on clear region’, IEEE International Radar Conf, Washington DC.
Simon, M. & Alouini, M. [1998], ‘A unified approach to the performance analysis of digital communication over generalized fading channels’, Proceedings of the IEEE 86(9), 1860–1877.
Skolnik, M. I. [2008], Radar Handbook, Third Edition, McGraw-Hill, New York, NY.
Smadi, M. A. & Prabhu, V. K. [2004], ‘Analysis of partially coherent PSK system in wireless channels with equal-gain combining’, IEEE Canadian Conf Electrical Computer Engineering (CCECE'04)Ontario, Canada pp. 99–102.
Sozer, E. M., Proakis, J. G., Stojanovic, M., Rice, J. A., Benson, A. & Hatch, M. [1999], ‘Direct sequence spread spectrum based modem for under water acoustic communication and channel measurements’, MTS/IEEE OCEANS'99, Seattle, WA pp. 228–233.
Spafford, L. J. [1968], ‘Optimum radar signal processing in clutter’, IEEE Transactions on Information Theory 14(5), 734–743.
Stein, S. [1981], ‘Algorithms for ambiguity function processing’, IEEE Transactions on Acoustics, Speech and Signal Processing 29(3).
Stimson, G. W. [1998], Introduction to Airborne Radar, SciTech Publishing, Mendham, NJ.
Stoica, P. & Ganesan, G. [2002], ‘Maximum-SNR spatial-temporal formatting for MIMO channels’, IEEE Transactions on Signal Processing 50(12), 3036–3042.
Stoica, P., He, H. & Li, J. [2009a], ‘New algorithms for designing unimodular sequences with good correlation properties’, IEEE Transactions on Signal Processing 57(4), 1415–1425.
Stoica, P., He, H. & Li, J. [2009b], ‘On designing sequences with impulse-like periodic correlation’, IEEE Signal Processing Letters 16(8), 703–706.
Stoica, P., Jakobsson, A. & Li, J. [1998], ‘Capon, APES and matched-filterbank spectral estimation’, Signal Processing 66(1), 45–59.
Stoica, P., Li, H. & Li, J. [1999], ‘A new derivation of the APES filter’, IEEE Signal Processing Letter 6(8), 205–206.
Stoica, P., Li, J. & Xie, Y. [2007], ‘On probing signal design for MIMO radar’, IEEE Transactions on Signal Processing 55(8), 4151–4161.
Stoica, P., Li, J. & Xue, M. [2008], ‘Transmit codes and receive filters for radar’, IEEE Signal Processing Magazine 25(6), 94–109.
Stoica, P., Li, J. & Zhu, X. [2008], ‘Waveform synthesis for diversity-based transmit beampattern design’, IEEE Transactions on Signal Processing 56(6), 2593–2598.
Stoica, P. & Moses, R. L. [2005], Spectral Analysis of Signals, Prentice-Hall, Upper Saddle River, NJ.
Stojanovic, M., Catipovic, J. & Proakis, J. [1994], ‘Phase coherent digital communications for underwater acoustic channels’, IEEE Journal of Oceanic Engineering 19(1), 100–111.
Stojanovic, M. & Freitag, L. [2000], ‘Hypothesis-feedback equalization for direct-sequence spread-spectrum underwater communications’, MTS/IEEE OCEANS'00 pp. 123–128.
Stojanovic, M. & Freitag, L. [2004], ‘MMSE acquisition of DSSS acoustic communications signals’, MTS/IEEE OCEANS'04 pp. 14–19.
Stojanovic, M., Proakis, J. G., Rice, J. A. & Green, M. D. [1998], ‘Spread spectrum underwater acoustic telemetry’, MTS/IEEE OCEANS'98 pp. 650–654.
Sturm, J. F. [1999], ‘Using SeDuMi 1.02, a MATLAB toolbox for optimization over symmetric cones’, Optimization Methods and Software Online 1112, 625–653. Available: http://www2.unimaas.nl/ sturm/software/sedumi.html.
Stutt, C. A. & Spafford, L. J. [1968], ‘A ‘best’ mismatched filter response for radar clutter discrimination’, IEEE Transactions on Information Theory 14(2), 280–287.
Suehiro, N. [1994], ‘A signal design without co-channel interference for approximately synchronized CDMA systems’, IEEE Journal on Selected Areas in Communications 12(5), 837–841.
Sussman, S. [1962], ‘Least-square synthesis of radar ambiguity functions’, IEEE Transactions on Information Theory 8(3), 246–254.
Svantesson, T. [1999], ‘Modeling and estimation of mutual coupling in a uniform linear array of dipoles’, 1999 IEEE International Conf on Acoustics, Speech, and Signal Processing, Phoenix, Arizona.
Szabo, T. [2004], Diagnostic Ultrasound Imaging: Inside Out, Elsevier Academic Press, Burlington, MA.
Tang, X. H., Fan, P. Z. & Matsufuji, S. [2000], ‘Lower bounds on correlation of spreading sequence set with low or zero correlation zone’, IEEE Electronic Letters 36(6), 551–552.
Tang, X. & Mow, W. H. [2008], ‘A new systematic construction of zero correlation zone sequences based on interleaved perfect sequences’, IEEE Transactions on Information Theory 54(12), 5729–5734.
Torii, H., Nakamura, M. & Suehiro, N. [2004], ‘A new class of zero-correlation zone sequences’, IEEE Transactions on Information Theory 50(3), 559–565.
Trefethen, L. N. & Bau, D. [1997], Numerical Linear Algebra, Society for Industrial and Applied Mathematics, Philadelphia, PA.
Tropp, J. A., Dhillon, I. S., Heath, R.W. & Strohmer, T. [2005], ‘Designing structured tight frames via an alternating projection method’, IEEE Transactions on Information Theory 51(1), 188–209.
Tse, D. & Viswanath, P. [2005], Fundamentals of Wireless Communication, Cambridge University Press, New York, NY.
Tsimenidis, C. C., Hinton, O. R., Adams, A. E. & Sharif, B. S. [2001], ‘Underwater acoustic receiver employing direct-sequence spread spectrum and spatial diversity combining for shallow-water multi-access networking’, IEEE Journal of Oceanic Engineering 26, 594–603.
Turin, G. L. [1960], ‘An introduction to matched filters’, IRE Transactions on Information Theory 6, 311–329.
Van Trees, H. L. [2002], Optimum Array Processing: Part IV of Detection, Estimation, and Modulation Theory, John Wiley & Sons, New York, NY.
Vernon, C. C., Hand, J. W., Field, S. B., Machin, D., Whaley, J. B., Van Der Zee, J., Van Putten, W. L. J., Van Rhoon, G. C., Van Dijk, J. D. P., González, D. G., Liu, F., Goodman, P. & Sherar, M. [1996], ‘Radiotherapy with or without hyperthermia in the treatment of superficial localized breast cancer: results from five randomized controlled trials’, International Journal of Radiation Oncology Biology Physics 35(4), 731–744.
Wang, G. & Lu, Y. [2011], ‘Designing single/multiple sparse frequency transmit waveforms with sidelobe constraint’, IET Radar Sonar and Navigation 5(1), 32–38.
Wang, J. & Moeneclaey, M. [1992], ‘DS-SSMA star network over indoor radio multipath Rician fading channels’, Military Communications Conf 3, 841–845.
Ward, D. B., Kennedy, R. A. & Williamson, R. C. [1996], ‘FIR filter design for frequency invariant beamformers’, IEEE Signal Processing Letters 3(3), 69–71.
Weiss, A. J. & Picard, J. [2008], ‘Maximum-likelihood position estimation of network nodes using range measurements’, IET Signal Processing 2(4), 394–404.
Welch, L. R. [1974], ‘Lower bounds on the maximum correlation of signals’, IEEE Transactions on Information Theory IT-20(3), 397–399.
Wolf, J. D., Lee, G. M. & Suyo, C. E. [1968], ‘Radar waveform synthesis by mean-square optimization techniques’, IEEE Transactions on Aerospace and Electronic Systems 5(4), 611–619.
Woodward, P. M. [1957], Probability and Information Theory with Applications to Radar, Pergamon, New York, NY.
Xu, L., Li, J. & Stoica, P. [2006], ‘Radar imaging via adaptive MIMO techniques’, 14th European Signal Processing Conf, (invited), Florence, Italy.
Xu, L., Li, J. & Stoica, P. [2008], ‘Target detection and parameter estimation for MIMO radar systems’, IEEE Transactions on Aerospace and Electronic Systems 44(3), 927–939.
Yang, T. C. & Yang, W. B. [2008], ‘Performance analysis of direct-sequence spread-spectrum underwater acoustic communications with low signal-to-noise-ratio input signals’, Journal of the Acoustical Society of America 123(2), 842–855.
Yang, Y. & Blum, R. S. [2007a], ‘MIMO radar waveform design based on mutual information and minimum mean-square error estimation’, IEEE Transactions on Aerospace and Electronic Systems 43(1), 330–343.
Yang, Y. & Blum, R. S. [2007b], ‘Minimax robust MIMO radar waveform design’, IEEE Journal of Selected Topics in Signal Processing 1(1), 147–155.
Yardibi, T., Li, J., Stoica, P., Xue, M. & Baggeroer, A. B. [2010], ‘Source localization and sensing: A nonparametric iterative adaptive approach based on weighted least squares’, IEEE Transactions on Aerospace and Electronic Systems 46(1), 425–443.
Yuan, X., Borup, D., Wiskin, J., Berggren, M. & Johnson, S. A. [1999], ‘Simulation of acoustic wave propagation in dispersive media with relaxation losses by using FDTD method with PML absorbing boundary condition’, IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control 46(1), 14–23.
Zeng, X., Li, J. & McGough, R. [2010], ‘A waveform diversity method for optimizing 3-D power depositions generated by ultrasound phased arrays’, IEEE Transactions on Biomedical Engineering 57(1), 41–47.
Zhang, N. & Golomb, S.W. [1993], ‘Polyphase sequence with low autocorrelations’, IEEE Transactions on Information Theory 39(3), 1085–1089.
Zoraster, S. [1980], ‘Minimum peak range sidelobe filters for binary phase-coded waveforms’, IEEE Transactions on Aerospace and Electronic Systems 16(1), 112–115.

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