. Méthode-basée-sur-leslm-)...., Selected Mapping, p.93

M. Méthode-du, Unitary Rotation pour, p.97

L. Méthodes-dites-À-aux-systèmes and S. , Ajout de Signal, p.99

L. Méthode-de, Tone Reservation, p.99

.. Extension-de-la-méthode, Tone Reservation" à l'aide d'un algorithme de type SOCP pour les systèmes MIMO-OFDM : application aux porteuses adjacentes, p.106

.. Extension-de-la-méthode, Tone Reservation" à l'aide de SOCP pour les systèmes MIMO-OFDM : application aux porteuses dans la bande utile, p.116

R. De, 2) (canal de Rayleigh à évanouissements plats) pour différentes valeurs, Comparison des CCDFs du PR (théorique et simulation) du signal reçu en MIMO, p.88

. Schéma-de-principe-de-la-méthode-du....., Selected Mapping", p.93

. Schéma-de-la-méthode-du and M. Slm-pour-les-systèmes, a) individuel , (b) concurrent, p.94

L. Effets-de-la-troncature-au-filtre-en-racine-de-cosinus-surélevés, Haute : le filtre est échantillonné à N e = 4 échantillons/symbole avec ? = 0.5 et tronqué à 4 symboles, Basse : le spectre correspondant. . . . . . . . . . . . 139

L. Effets-de-la-troncature-au-filtre-en-racine-de-cosinus-surélevés, Haute : le filtre est échantillonné à N e = 4 échantillons/symbole avec ? = 0.5 et tronqué à 8 symboles, Basse : le spectre correspondant, p.140

L. Effets-de-la-troncature-au-filtre-en-racine-de-cosinus-surélevés, Haute : le filtre est échantillonné à N e = 4 échantillons/symbole avec ? = 0.5 et tronqué à 16 symboles, Basse : le spectre correspondant. . . . . . . . . . . . 141

T. A. Wilkinson and A. E. Jones, Minimisation of the peak to mean envelope power ratio of multicarrier transmission schemes by block coding, 1995 IEEE 45th Vehicular Technology Conference. Countdown to the Wireless Twenty-First Century, pp.825-829, 1995.
DOI : 10.1109/VETEC.1995.504983

B. M. Popovic, Synthesis of power efficient multitone signals with flat amplitude spectrum, IEEE Transactions on Communications, vol.39, issue.7, pp.1031-1033, 1991.
DOI : 10.1109/26.87205

M. Sharif, M. Gharavi-alkhansari, and B. H. Khalaj, On the peak-to-average power of ofdm signals based on oversampling, IEEE Transactions on Communications, vol.51, issue.1, pp.72-78, 2003.
DOI : 10.1109/TCOMM.2002.807619

R. Van-nee, A. De, and . Wild, Reducing the peak-to-average power ratio of OFDM, VTC '98. 48th IEEE Vehicular Technology Conference. Pathway to Global Wireless Revolution (Cat. No.98CH36151), 1998.
DOI : 10.1109/VETEC.1998.686121

C. Tellambura, Computation of the Continuous-Time PAP of an OFDM Signal with BPSK Subcarriers, IEEE Communications letters, vol.5, issue.5, 2001.

N. Dinur and D. Wulich, Peak-to-average power ratio in high-order OFDM, IEEE Transactions on Communications, vol.49, issue.6, pp.1063-1072, 2001.
DOI : 10.1109/26.930636

H. Ochiai and H. Imai, On the distribution of the peak-to-average power ratio in OFDM signals, IEEE Transactions on Communications, vol.49, issue.2, pp.282-289, 2001.
DOI : 10.1109/26.905885

X. Zhou and J. Caffery, A new distribution bound and reduction scheme for OFDM PAPR, Wireless Personal Multimedia Communications, vol.1, pp.128-162, 2002.

J. A. Davis and J. Jedwab, Peak-to-mean power control in OFDM, Golay complementary sequences, and Reed-Muller codes, IEEE Transactions on Information Theory, vol.45, issue.7, pp.2397-2417, 1999.
DOI : 10.1109/18.796380

X. Li and L. J. Cimini, Effects of clipping and filtering on the performance of OFDM, Proceedings of VTC'97, 1997.

X. Wang, T. Tjhung, and C. Ng, Reduction of peak to average power ratio of OFDM system using a companding technique, IEEE Trans. Broad, vol.45, pp.3-303, 1999.

J. Tellado-mourelo, Peak to Average Power Ratio Reduction for multicarrier modulation, 1999.

A. Aggarwal and T. Meng, A convex interior-point method for optimal OFDM PAR reduction, IEEE International Conference on Communications, 2005. ICC 2005. 2005, 2005.
DOI : 10.1109/ICC.2005.1494686

Y. Louet and J. Palicot, A classification of methods for efficient power amplification of signals, annals of telecommunications - annales des t??l??communications, vol.50, issue.3, 2008.
DOI : 10.1007/s12243-008-0035-4

URL : https://hal.archives-ouvertes.fr/hal-00327005

D. Wulich and L. Goldfeld, Bound of the distribution of instantaneous power in single carrier modulation, IEEE Transactions on Wireless Communications, vol.4, issue.4, pp.1773-1778, 2005.
DOI : 10.1109/TWC.2005.850309

S. Zabre, Amplification non-linéaire d'un multiplex de porteuses modulés à fort Facteur de Crête, thèse, 2007.

J. Palicot, Y. Louet, S. Hussain, and S. Zabre, Frequency Domain Interpretation of Power Ratio Metric for Cognitive Radio Systems, Proceedings of IET Communications Journal, 2008.
URL : https://hal.archives-ouvertes.fr/hal-00327004

Y. Lee, Y. You, W. Jeon, J. Paik, and H. Song, Peak-to-Average Power Ratio in MIMO-OFDM Systems Using Selective Mapping, IEEE Communications letters, vol.7, issue.12, 2003.

G. Cohen, J. Dornstetter, and P. Godlewski, Codes correcteurs d'erreurs. Une introduction au codage algébrique, 1992.

A. Glavieux and M. Joindot, Communications numériques. Introduction, 1996.

J. C. Bic, D. Duponteil, and J. C. Imbeaux, Elements de communications numériques - Transmission sur fréquence porteuse, 1986.

S. Benedetto and E. Biglieri, Principle of digital transmission with wireless applications, Kluwer Academic, 1999.

H. Bölcskei and A. J. Paulraj, The Communications Handbook", chapter Multipleinput multiple-output (MIMO) wireless systems, 2001.

R. Gold, Optimum binary sequences for spread-spectrum multiplexing, IEEE Trans. Inform. Theory, pp.619-621, 1967.

G. L. Turin, Introduction to spread-spectrum antimultipath techniques and their application to urban digital radio, Proceedings of the IEEE, vol.68, issue.3, pp.328-353, 1980.
DOI : 10.1109/PROC.1980.11645

G. Burel, C. Bouder, and O. Berder, Detection of direct sequence spread spectrum transmissions without prior knowledge, GLOBECOM'01. IEEE Global Telecommunications Conference (Cat. No.01CH37270), pp.236-239, 2001.
DOI : 10.1109/GLOCOM.2001.965114

M. Gudmundson, Generalized frequency hopping in mobile radio systems, IEEE 43rd Vehicular Technology Conference, pp.788-791, 1993.
DOI : 10.1109/VETEC.1993.508808

O. Berder, C. Bouder, and G. Burel, Identification of frequency hopping communications, Proceedings of WSEAS Conference on Circuits, Systems, Communications and Computers (CSCC), pp.3851-3856, 2000.

N. Prayongpun and K. Raoof, MIMO Channel Capacities in Presence of Polarization Diversity with and without Line-of-Sight Path, Journal WSEAS Trans. on Commun, vol.5, issue.9, pp.1744-1750, 2006.

R. G. Vaughan, Polarization diversity in mobile communications, IEEE Transactions on Vehicular Technology, vol.39, issue.3, pp.177-186, 1990.
DOI : 10.1109/25.130998

]. V. Erceg, L. Greenstein, S. Tjandra, S. Parkoff, A. Gupta et al., An empirically based path loss model for wireless channels in suburban environments, IEEE Journal on Selected Areas in Communications, vol.17, issue.7, pp.1205-1211, 1999.
DOI : 10.1109/49.778178

W. C. Jakes, Microwaves mobile communications, 1982.
DOI : 10.1109/9780470545287

A. Mansour, C. Jutten, and P. Loubaton, Adaptive subspace algorithm for blind separation of independent sources in convolutive mixture, IEEE Transactions on Signal Processing, vol.48, issue.2, pp.583-586, 2000.
DOI : 10.1109/78.823990

URL : https://hal.archives-ouvertes.fr/hal-00802444

A. Wittneben, Basestation modulation diversity for digital simulcast, [1991 Proceedings] 41st IEEE Vehicular Technology Conference, pp.848-853, 1991.
DOI : 10.1109/VETEC.1991.140615

N. Seshadri and J. H. Winters, Two signaling schemes for improving the error performance of frequency division duplex (FDD) transmission systems using transmitter antenna diversity, International Journal of Wireless Information Networks, vol.10, issue.No. 3, pp.49-59, 1994.
DOI : 10.1007/BF02117292

M. A. Khalighi, K. Raoof, and G. Jourdain, Capacity of wireless communication systems employing antenna arrays, Journal of Wireless Personal Communications, issue.23, pp.321-352, 2002.
URL : https://hal.archives-ouvertes.fr/hal-00082708

P. A. Bello, Selectrive Fading Limitations of the Kathryn Modem and Some System Design Considerations, IEEE Transactions on Communications, vol.13, issue.3, pp.320-333, 1965.
DOI : 10.1109/TCOM.1965.1089134

M. S. Zimmerman and A. L. Kirsch, The AN/GSC-10 (KATHRYN) Variable Rate Data Modem for HF Radio, IEEE Transactions on Communications, vol.15, issue.2, pp.197-205, 1967.
DOI : 10.1109/TCOM.1967.1089577

M. L. Doelz, E. Heald, and D. L. Martin, Binary Data Transmission Techniques for Linear Systems, Proceedings of the IRE, vol.45, issue.5, pp.656-661, 1957.
DOI : 10.1109/JRPROC.1957.278415

G. A. Franco and G. Lachs, An orthogonal coding technique for Communications, IRE Intern. Conv. Rec, vol.9, pp.126-133, 1961.

A. R. Kaye and D. R. George, Transmission of Multiplexed PAM Signals Over Multiple Channel and Diversity Systems, IEEE Transactions on Communications, vol.18, issue.5, pp.520-526, 1970.
DOI : 10.1109/TCOM.1970.1090417

S. B. Weinstein and P. M. Ebert, Data Transmission by Frequency-Division Multiplexing Using the Discrete Fourier Transform, IEEE Transactions on Communications, vol.19, issue.5, 1971.
DOI : 10.1109/TCOM.1971.1090705

B. Hirosaki, An Orthogonally Multiplexed QAM System Using the Discrete Fourier Transform, IEEE Transactions on Communications, vol.29, issue.7, pp.982-989, 1981.
DOI : 10.1109/TCOM.1981.1095093

B. Hirosaki, A Maximum Likelihood Receiver for an Orthogonally Multiplexed QAM System, IEEE Journal on Selected Areas in Communications, vol.2, issue.5, pp.757-764, 1984.
DOI : 10.1109/JSAC.1984.1146108

B. Hirosaki, S. Hasegawa, and A. Sabato, Advanced Groupband Data Modem Using Orthogonally Multiplexed QAM Technique, IEEE Transactions on Communications, vol.34, issue.6, pp.587-592, 1986.
DOI : 10.1109/TCOM.1986.1096582

L. J. Cimini, Analysis and Simulation of a Digital Mobile Channel Using Orthogonal Frequency Division Multiplexing, IEEE Transactions on Communications, vol.33, issue.7, pp.665-675, 1985.
DOI : 10.1109/TCOM.1985.1096357

A. Ruiz and J. M. Cioffi, A frequency domain approach to combined spectral shaping and coding, Proc. ICC, pp.1711-1715, 1987.

J. A. Bingham, Multicarrier modulation for data transmission: an idea whose time has come, IEEE Communications Magazine, vol.28, issue.5, pp.5-14, 1990.
DOI : 10.1109/35.54342

M. Alard and R. Lassalle, Principles of modulation and channel coding for digital broadcasting for mobile receivers, EBU Technical Review, issue.224, pp.168-190, 1987.

D. Catellain, B. Sueur, and B. L. Floch, Les réseaux hertziens de diffusions numériques : du DAB à la TV numérique" L'écho des recherches, p.152, 1993.

C. Dosch, P. A. Ratliff, and D. Pommier, First public demonstrations of COFDM/MASCAM. A milestone for the future of radio broadcasting, EBU Review Technical, issue.232, pp.275-283, 1988.

B. , L. Floch, M. Alard, and C. Berrou, Coded Orthogonal Frequency Division Multiplex, Proceedings of the IEEE, pp.982-996, 1995.

W. Y. Zou and Y. Wu, COFDM: an overview, IEEE Transactions on Broadcasting, vol.41, issue.1, pp.628-634, 1995.
DOI : 10.1109/11.372015

H. Sari, G. Karam, and I. Jeanclaude, Transmission techniques for digital TV Broadcasting, IEEE Communications Magazine, pp.100-109, 1995.
DOI : 10.1109/35.350382

B. Ledoux, COFDM-6 field tests, IEEE Transactions on Consumer Electronics, vol.42, issue.3, 1993.
DOI : 10.1109/30.536047

J. C. Rault, D. Castelain, and B. L. Floch, The coded orthogonal frequency division multiplexing (COFDM) technique, and its application to digital radio broadcasting towards mobile receivers, IEEE Global Telecommunications Conference, 1989, and Exhibition. 'Communications Technology for the 1990s and Beyond, 1989.
DOI : 10.1109/GLOCOM.1989.64008

J. Wolf, Field Strength measurements in DAB networks with test receivers ESVB, News from Rodhe, issue.139, pp.22-23, 1992.

Y. Wu and W. Y. Zou, Performance Simulation of COFDM for TV Broadcast Application, SMPTE Journal, vol.104, issue.5, 1995.
DOI : 10.5594/J15288

P. Combelles, J. L. Sicre, P. Penard, and C. Joanblanq, Diffusion terrestre de télévision numérique, 1996.

J. F. Hélard and B. L. Floch, Treillis coded orthogonal frequency division multiplexing for Digital Video Transmission, Proceedings of Globecom 91, 1991.

M. Guillet, J. Y. Chouinard, M. Trichard, and Y. Wu, COFDM for Digital ATV Terrestrial Distribution over 6 MHz channel, IEE Intern. Broadcasting Convention, n.413, pp.29-34, 1995.

P. Hayet and J. M. Guillaud, Modem OFDM pour la télévision numérique, 1992.

W. Y. Chen and D. L. Waring, Applicability of ADSL to support video dial tone in the copper loop, IEEE Communications Magazine, vol.32, issue.5, 1994.
DOI : 10.1109/35.281584

T. R. Hsing, C. T. Chen, and J. A. Bellisio, Video communications and services in the copper loop, IEEE Communications Magazine, vol.31, issue.1, 1993.
DOI : 10.1109/35.180075

A. Guy, Etude, conception et réalisation d'un système de linéarisation d'amplificateurs de puissance à état solide pour des applications spatiales, Thèse de doctorat, 2000.

H. Abdulkader, Application de réseaux de neurones à des chaînes de transmission numérique par satellite -gradient naturel, Thèse de l'Institut National Polytechnique de Toulouse, 2003.

S. Bouchired, Equalization of time-varying non-linear channels using neural networks : Application to the satellite mobile channel, Thèse de doctorat, 1999.

A. A. Saleh, Frequency-Independent and Frequency-Dependent Nonlinear Models of TWT Amplifiers, COM-29, pp.1715-1720, 1981.
DOI : 10.1109/TCOM.1981.1094911

C. Rapp, Effects of HPA-nonlinearity on a 4-DPSK/OFDM-signal for a digitial sound broadcasting system, Proceedings of the Second European Conference on Satellite Communications, pp.179-184, 1991.

F. Launey, Contribution à la modélisation comportementale des amplificateurs de puissance, Thèse de doctorat, 2003.

P. B. Kenington, High Linearity RF Amplifier Design, Artech House, 2000.

A. Chaker, Influence de l'amplificateur de puissance sur une chaîne de transmission multiporteuses :prise en compte de l'effet mémoire, Thèse de doctorat, 2004.

S. C. Cripps, RF power amplifiers for wireless communications, IEEE Microwave Magazine, vol.1, issue.1, 1999.
DOI : 10.1109/MMW.2000.823830

S. Ragusa, Écrêtage Inversible pour l'Amplification Non-Linéaire des Signaux OFDM dans les Terminaux Mobiles, Thèse de Doctorat, 2006.

E. Costa and S. Pupolin, QAM-m-OFDM System Performance in the Presence of a non-linear Amplifier and Phase Noise, IEEE Transactions on Communications, vol.50, issue.3, 2002.

P. Jardin and G. Baudoin, Filter Lookup Table Method for Power Amplifier Linearization, IEEE Transactions on Vehicular Technology, vol.56, issue.3, pp.1076-1087, 2007.
DOI : 10.1109/TVT.2007.895566

J. Palicot and Y. Louët, Power Ratio definitions and analysis in single carrier modulation, EUSIPCO05, 2005.

M. Sharif and B. H. Khalaj, Peak to mean envelope power ratio of oversampled OFDM signals: an analytical approach, ICC 2001. IEEE International Conference on Communications. Conference Record (Cat. No.01CH37240), pp.1476-1480, 2001.
DOI : 10.1109/ICC.2001.937166

J. Tellado-mourelo, Peak to Average Power Ratio Reduction for multicarrier modulation, 1999.

Y. Louët and J. Palicot, Synthèse de la notion de facteur de crête et application aux modulations monoporteuse, 2005.

M. Friese, Multitone signals with low crest factor, IEEE Transactions on Communications, vol.45, issue.10, pp.1338-1344, 1997.
DOI : 10.1109/26.634697

M. Friese, Multicarrier modulation with low peak-to-average power ratio, Electronics Letters, vol.32, issue.8, pp.713-714, 1996.
DOI : 10.1049/el:19960495

F. Xiong, Digital Modulation Techniques, p.430, 2000.

R. Van-nee and R. Prasad, OFDM for wirelless multimedia communications, 2000.

A. D. Jayalath and C. R. Athaudage, On the PAR reduction of OFDM signal Using Multiple Signal Representation, IEEE Communications Letters, pp.425-427, 2004.

G. J. Foschini and M. J. Gans, On limits of wireless communications in a fading environment when using mutiple antennas, Wireless Personal Communications, vol.6, issue.3, pp.311-335, 1998.
DOI : 10.1023/A:1008889222784

P. W. Wolniansky, G. J. Foschini, G. D. Golden, and R. A. Valenzuela, V-BLAST: an architecture for realizing very high data rates over the rich-scattering wireless channel, 1998 URSI International Symposium on Signals, Systems, and Electronics. Conference Proceedings (Cat. No.98EX167), pp.295-300, 1998.
DOI : 10.1109/ISSSE.1998.738086

H. Bölcskei, D. Gesbert, and A. J. Paulraj, On the capacity of OFDM-based multiantenna systems, Proceedings of the IEEE International Conference on Acoustics, Speech and Signal Processing (ICASSP), 2000.

B. , L. Floch, M. Alard, and C. Berrou, Coded orthogonal frequency division multiplex, IEEE Proceedings, vol.83, pp.982-996, 1995.

R. Liu and L. Tong, Special issue on blind systems identification and estimation, Proceedings of the IEEE, 1998.

T. L. Marzetta and B. M. Hochwald, Capacity of a mobile multiple-antenna communication link in Rayleigh flat fading, IEEE Transactions on Information Theory, vol.45, issue.1, pp.139-157, 1999.
DOI : 10.1109/18.746779

B. M. Hochwald and T. L. Marzetta, Unitary space-time modulation for multipleantenna communications in Rayleigh flat fading, IEEE Transactions on Information Theory, pp.543-564, 2000.

B. L. Hughes, Differential space-time modulation, IEEE Transactions on Information Theory, pp.2567-2578, 2000.

M. A. Khalighi, J. M. Brossier, G. Jourdain, and K. Raoof, Water filling capacity of Rayleigh MIMO channels, 12th IEEE International Symposium on Personal, Indoor and Mobile Radio Communications. PIMRC 2001. Proceedings (Cat. No.01TH8598), 2001.
DOI : 10.1109/PIMRC.2001.965411

J. H. Winters, On the Capacity of Radio Communication Systems with Diversity in a Rayleigh Fading Environment, IEEE Journal on Selected Areas in Communications, vol.5, issue.5, pp.871-878, 1987.
DOI : 10.1109/JSAC.1987.1146600

I. E. Telatar, Capacity of Multi-antenna Gaussian Channels, European Transactions on Telecommunications, vol.45, issue.6, pp.585-595, 1999.
DOI : 10.1002/ett.4460100604

P. F. Driessen and G. J. Foschini, On the capacity formula for multiple input-multiple output wireless channels: a geometric interpretation, IEEE Transactions on Communications, vol.47, issue.2, pp.173-176, 1999.
DOI : 10.1109/26.752119

V. Tarokh, H. Jafarkhani, and A. R. Calderbank, Space-time block codes from orthogonal designs, IEEE Transactions on Information Theory, vol.45, issue.5, pp.1456-1467, 1999.
DOI : 10.1109/18.771146

URL : http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.138.4537

R. F. Fischer and M. Hoch, Peak-to-Average Power Ratio Reduction in MIMO OFDM, 2007 IEEE International Conference on Communications, 2007.
DOI : 10.1109/ICC.2007.130

F. Boixadera and J. Boutros, Capacity considerations for wireless multiple-input multiple-output channels, Mobility and Teletraffic for Wireless Communications, 1999.

S. M. Alamouti, A simple transmit diversity technique for wireless communications, IEEE Journal on Selected Areas in Communications, vol.16, issue.8, pp.1451-1458, 1998.
DOI : 10.1109/49.730453

V. Tarokh, S. Alamouti, and P. Poon, New detection schemes for transmit diversity with no channel estimation, ICUPC '98. IEEE 1998 International Conference on Universal Personal Communications. Conference Proceedings (Cat. No.98TH8384), pp.917-920, 1998.
DOI : 10.1109/ICUPC.1998.733643

H. Sampath, S. Talwar, V. Erceg, and A. Paulraj, A fourth-generation MIMO-OFDM broadband wireless system: design, performance, and field trial results, IEEE Communications Magazine, pp.143-149, 2002.
DOI : 10.1109/MCOM.2002.1031841

O. Berder, L. Collin, G. Burel, and P. Rostaing, Digital transmission combining BLAST and OFDM concepts: experimentation on the UHF COST 207 channel, GLOBECOM'01. IEEE Global Telecommunications Conference (Cat. No.01CH37270), pp.141-145, 2001.
DOI : 10.1109/GLOCOM.2001.965095

H. Sampath, P. Stoica, and A. Paulraj, Generalized linear precoder and decoder design for MIMO channels using the weighted MMSE criterion, IEEE Transactions on Communications, pp.2198-2206, 2001.
DOI : 10.1109/26.974266

Y. G. Li, J. Chuang, and N. R. Sollenberger, Transmitter diversity for OFDM systems and its impact on high-rate data wireless networks, IEEE Journal on Selected Areas in Communications, vol.17, issue.7, pp.1233-1243, 1999.
DOI : 10.1109/49.778182

H. Bolcskei, D. Gesbert, and A. J. Paulraj, On the Capacity of OFDM-based Spatial Multiplexing Systems, IEEE Transactions on Communications, pp.225-234, 2002.

D. Jourdain, Caractérisation expérimentale du canal sous-marin petit fond pour la transmission acoustique horizontale, thèse, Institut National Polytechnique de Grenoble, 1996.

L. Collin, Optimisation de systèmes multi-antennes basée sur la distance minimale, thèse, 2002.

Y. Jun, Y. Jiawei, and L. Jiandong, Reduction of The Peak-to-Average Power Ratio of The Multicarrier Signal Via Artificial Signals, Proceding of ICCT, pp.581-585, 2000.

R. Bäuml, R. Fischer, and J. Huber, Reducing the peak-to-average power ratio of multicarrier modulation by selected mapping, Electronics Letters, vol.32, issue.22, pp.2056-2057, 1996.
DOI : 10.1049/el:19961384

S. Muller and B. Huber, A comparison of peak power reduction shcemes for OFDM, IEEE Global Telecommunication Conference, pp.338-341, 1998.

M. Tan, Z. Latinovic, and Y. Bar-ness, STBC MIMO-OFDM Peak-to-Average Power Ratio Reduction by Cross-Antenna Rotation and Inversion, IEEE Communications letters, vol.9, issue.7, 2005.

K. F. Lee and D. B. Williams, A space-time coded transmitter diversity technique for frequency selective fading channels, Proceedings of the 2000 IEEE Sensor Array and Multichannel Signal Processing Workshop. SAM 2000 (Cat. No.00EX410), pp.149-152, 2000.
DOI : 10.1109/SAM.2000.877987

M. Tan and Y. Bar-ness, OFDM peak-to-average power ratio reduction by combined symbol rotation and inversion with limited complexity, Proc. IEEE GLOBE- COM, pp.605-610, 2003.

H. Lee, D. N. Liu, W. Zhu, and M. P. Fitz, Peak Power Reduction Using a Unitary Rotation in Multiple Transmit Antennas, 2005.

K. W. Park and Y. S. Cho, A PAPR Reduction Method for MIMO-OFDM Systems Using Subband Permutation, IEICE Transactions on Communications, vol.89, issue.1, 2006.
DOI : 10.1093/ietcom/e89-b.1.220

Z. Latinovic and Y. Bar-ness, SFBC MIMO-OFDM peak-to-average power ratio reduction by polyphase interleaving and inversion, IEEE Communications Letters, vol.10, issue.4, 2006.
DOI : 10.1109/LCOMM.2006.1613742

S. Boyd and L. Vandenberghe, Convex optimization

M. Lobo, L. Vandenberghe, S. Boyd, and H. Lebret, Applications of second-order cone programming, Special Issue on Linear Algebra in Control, Signals and Image Processing, pp.193-228, 1998.
DOI : 10.1016/S0024-3795(98)10032-0

A. Ben-tal and A. Nemirovski, Convex Optimization in engineering : Modeling, Analysis, Algorithms

H. Lebret, Synthèse de diagramme de reseaux d'antennes par optimisation convexe, Thèse de doctorat, 1994.

M. Grant, S. Boyd, and Y. Ye, CVX -Matlab Software for Disciplined Convex Programming

F. Jos and . Sturm, SeDuMi : software for optimization over symmetric cones