.. Historique-de-l-'uwb, 13 1.3. Applications visées et potentiels de l, 15 1.3.2. Systèmes radar de

E. Europe and .. , L'UWB et les autres technologies de transmission sans fil, Introduction

3. Système, Réseaux locaux sans fil : WPAN (Wireless Personal Area Network) et WLAN (Wireless Local Area Network)

C. L. Bennett and G. F. Ross, Time-domain electromagnetics and its applications, Proc. IEEE, pp.299-318, 1978.
DOI : 10.1109/PROC.1978.10902

T. Barrett, History of Ultra Wideband communications and radar: Part I, UWB communications ; Part II, UWB radars and sensors, Microwave Journal, pp.22-56, 2001.

H. F. Harmuth, Transmission of information by orthogonal functions, 1972.

H. F. Harmuth, Range-Doppler Resolution of Electromagnetic Walsh Waves in Radar, IEEE Transactions on Electromagnetic Compatibility, vol.17, issue.2, pp.106-111, 1975.
DOI : 10.1109/TEMC.1975.303415

H. F. Harmuth, Frequency-Sharing and Spread-Spectrum Transmission with Large Relative Bandwidth, IEEE Transactions on Electromagnetic Compatibility, vol.20, issue.1, pp.232-239, 1978.
DOI : 10.1109/TEMC.1978.303653

G. F. Ross, Transmission and reception system for generating and receiving base-band duration pulse signals for short base-band pulse communication system, U.S. Patent, vol.3728, p.25, 1973.

M. Z. Win and R. A. Scholtz, Impulse radio, Proc. IEEE International Symposium on Personal, Indoor and Mobile Radio Communications, pp.245-257, 1997.

M. Z. Win and R. A. Scholtz, Impulse radio: how it works, IEEE Communications Letters, vol.2, issue.2, pp.36-38, 1998.
DOI : 10.1109/4234.660796

M. Z. Win and R. A. Scholtz, Ultra-wide bandwidth time-hopping spread-spectrum impulse radio for wireless multiple-access communications, IEEE Transactions on Communications, vol.48, issue.4, pp.679-691, 2000.
DOI : 10.1109/26.843135

M. Z. Win and R. A. Scholtz, Characterization of ultra-wide bandwidth wireless indoor channels: a communication-theoretic view, IEEE Journal on Selected Areas in Communications, vol.20, issue.9, pp.1613-1627, 2002.
DOI : 10.1109/JSAC.2002.805031

M. Z. Win and R. A. Scholtz, On the robustness of ultra-wide bandwidth signals in dense multipath environments, IEEE Communications Letters, vol.2, issue.2, pp.36-38, 1998.
DOI : 10.1109/4234.660801

M. Z. Win and R. A. Scholtz, On the energy capture of ultrawide bandwidth signals in dense multipath environments, IEEE Communications Letters, vol.2, issue.9, pp.245-247, 1998.
DOI : 10.1109/4234.718491

M. Z. Win, G. Chrisikos, and N. R. Solenberger, Performance of RAKE reception in dense multipath channels: implications of spreading bandwidth and selection diversity order, IEEE Journal on Selected Areas in Communications, vol.18, issue.8, pp.1516-1525, 2000.
DOI : 10.1109/49.864015

M. Z. Win, Spectral density of random UWB signals, IEEE Communications Letters, vol.6, issue.12, pp.526-528, 2002.
DOI : 10.1109/LCOMM.2002.806458

M. Z. Win, Spectral density of random time-hopping spread-spectrum UWB signals with uniform timing jitter, MILCOM 1999. IEEE Military Communications. Conference Proceedings (Cat. No.99CH36341), 1996.
DOI : 10.1109/MILCOM.1999.821393

M. Z. Win, A unified spectral analysis of generalized time-hopping spread-spectrum signals in the presence of timing jitter, IEEE Journal on Selected Areas in Communications, vol.20, issue.9, pp.1664-1676, 2000.
DOI : 10.1109/JSAC.2002.805030

. Et and . No, 98-153, 63 Fed. Reg.50184Notice of inquiry, 1998.

. Et and . No, 98-153, 65 FedNotice of proposed rule making, Reg, vol.37332, 2000.

. Et and . No, 98-153Revision of part 15 of the commission's rules regarding Ultra- Wideband transmission systems, 2002.

A. Batra, Multi-band OFDM physical layer proposal for IEEE 802.15 task group 3a, IEEE P802.15 Working Group for Wireless Personal Area Network, 2004.

M. B. Shoemake, MultiBand OFDM update and overview, MultiBand OFDM Alliance SIG, 2004.

M. Welborn, M. Mc-laughlin, and R. Kohno, DS-UWB physical layer submission to 802.15 task group 3a, IEEE P802.15 Working Group for Wireless Personal Area Network, 2004.

D. A. Cummings, Aggregate ultra wideband impact on Global Positioning System receivers, Proceedings RAWCON 2001. 2001 IEEE Radio and Wireless Conference (Cat.No.01EX514), pp.101-104, 2001.
DOI : 10.1109/RAWCON.2001.947539

M. Hämäläinen, V. Hovinen, R. Tesi, J. H. Iinatti, M. Latva-aho et al., On the UWB system coexistence with GSM900, UMTS/WCDMA, and GPS, IEEE Journal on Selected Areas in Communications, vol.20, issue.9, pp.1712-1721, 2002.
DOI : 10.1109/JSAC.2002.805242

R. Giuliano, F. Mazzenga, and F. Vatalaro, On the interference between UMTS and UWB systems, IEEE Conference on Ultra Wideband Systems and Technologies, 2003, pp.339-343, 2003.
DOI : 10.1109/UWBST.2003.1267860

J. Landsford, UWB Coexistence and Cognitive Radio, Proc. International Workshop on Ultra Wideband Systems Joint with Conference on Ultra Wideband Systems and Technologies, pp.35-39, 2004.

J. Mccorkle, DS-CDMA : the technology of choice for UWB, IEEE P802.15 Working Group for Wireless Personal Area Network, 2003.

M. Mboa-sig and W. Paper, Ultra Wideband : high speed, short-range technology with far-reaching effects, 2004.

E. Kivisaari, UWB communications ? A standard war, Research Seminar on Telecommunications Business II, 2004.

W. Wu, W. Wang, H. Yin, and D. Wang, Carrier-less, single and multi-carrier UWB radio technology, 2004 International Workshop on Ultra Wideband Systems Joint with Conference on Ultra Wideband Systems and Technologies. Joint UWBST & IWUWBS 2004 (IEEE Cat. No.04EX812), pp.192-196, 2004.
DOI : 10.1109/UWBST.2004.1320962

L. Hanzo, M. Münster, B. J. Choi, and T. Keller, OFDM and MC-CDMA for broadband multiuser communications, WLANs and broadcasting, 2003.

S. Glisic and B. Vucetic, Spread spectrum CDMA systems for wireless communications, 1997.

K. Siwiak, P. Withington, and S. Phelan, Ultra-wide band radio: the emergence of an important new technology, IEEE VTS 53rd Vehicular Technology Conference, Spring 2001. Proceedings (Cat. No.01CH37202), pp.1169-1172, 2001.
DOI : 10.1109/VETECS.2001.944564

M. L. Welborn, System considerations for ultra-wideband wireless networks, Proceedings RAWCON 2001. 2001 IEEE Radio and Wireless Conference (Cat.No.01EX514), pp.5-8, 2001.
DOI : 10.1109/RAWCON.2001.947480

J. R. Foerster, Ultra-Wideband technology enabling low-power, high-rate connectivity, Proc. IEEE Workshop Wireless Communications Networking, 2002.

G. R. Aiello and G. D. Rogerson, Ultra-Wideband Wireless Systems, IEEE Microwave Magazine, vol.4, issue.2, pp.36-47, 2003.
DOI : 10.1109/MMW.2003.1201597

K. Mandke, H. Nam, L. Yerramneni, C. Zuniga, and T. Rappaport, The evolution of Ultra Wide Band radio for wireless personal area networks, High Frequency Electronics, 2003.

D. Porcino and W. Hirt, Ultra-wideband radio technology: Potential and challenges ahead, IEEE Communications Magazine, vol.41, issue.7, pp.66-74, 2003.
DOI : 10.1109/MCOM.2003.1215641

A. F. Molisch and J. Zhang, Ultra Wideband systems, Business Briefing: Wireless Technology, 2003.

R. Kohno, State of arts in Ultra Wideband (UWB) wireless technology and global harmonization, Proc. 34 th European Microwave Conference, pp.1093-1099, 2004.

L. Yang and G. B. Giannakis, Ultra-wideband communications - An idea whose time has come, IEEE Signal Processing Magazine, vol.21, issue.6, pp.26-54, 2004.
DOI : 10.1109/MSP.2004.1359140

U. Systèmes-de-communications, .. Canal-et-couche-physique, and U. Et, 35 2.2. Modélisation des canaux de propagation 36 2.2.2.2. Modélisation de l'atténuation lors de la propagation (Path Loss Model), 33 2.1. Introduction : Radio par Impulsions. 35 2.2.2. Canal IEEE 802.15.3a ? Modèle 3a

L. Frequency and ). , 49 2.3.1. Construction des signaux Impulsions basées sur les fonctions polynomiales de, Modèle IEEE 802.15.4a [100-960 MHz] ? Modèle 4a LF. 46 2.2.4. Comparaison entre modèles 3a et

F. Principe-de and E. Récepteurs, Conclusion sur les techniques de réception, 63 2.4.2.5. Eléments de conclusion, p.67

M. Z. Win and R. A. Scholtz, Impulse Radio, Proc. IEEE International Symposium on Personal, Indoor and Mobile Radio Communications, pp.245-257, 1997.

J. Foerster and Q. Li, UWB channel modeling contribution from Intel, Project IEEE P802.15 Working Group for Wireless Personal Area Network, 2004.

A. F. Molisch and J. Foerster, Channel models for ultrawideband personal area networks, IEEE Wireless Communications, vol.10, issue.6, pp.14-21, 2003.
DOI : 10.1109/MWC.2003.1265848

A. Molisch, UWB wireless channels ? propagation aspects and interplay with system design, Proc. 34 th European Microwave Conference, pp.1101-1104, 2004.

A. F. Molisch, Ultrawideband Propagation Channels-Theory, Measurement, and Modeling, IEEE Transactions on Vehicular Technology, vol.54, issue.5, pp.1528-1545, 2005.
DOI : 10.1109/TVT.2005.856194

A. Saleh and R. Valenzuela, A Statistical Model for Indoor Multipath Propagation, IEEE Journal on Selected Areas in Communications, vol.5, issue.2, pp.128-137, 1987.
DOI : 10.1109/JSAC.1987.1146527

B. H. Fleury, M. Tschudin, R. Heddergott, D. Dalhaus, and I. K. Pedersen, Channel parameter estimation in mobile radio environments using the SAGE algorithm, IEEE Journal on Selected Areas in Communications, vol.17, issue.3, pp.434-450, 1999.
DOI : 10.1109/49.753729

K. Haneda, J. I. Takada, and K. Kobayashi, Experimental evaluation of a SAGE algorithm for ultra wideband channel sounding in an anechoic chamber, 2004 International Workshop on Ultra Wideband Systems Joint with Conference on Ultra Wideband Systems and Technologies. Joint UWBST & IWUWBS 2004 (IEEE Cat. No.04EX812), pp.66-70, 2004.
DOI : 10.1109/UWBST.2004.1320937

J. M. Cramer, R. Scholtz, and W. Win, Evaluation of an ultra wideband propagation channel, IEEE Transactions on Antenna and Propagation, vol.5, issue.5, pp.561-570, 2002.

R. D. Wilson and R. A. Scholtz, On the dependence of UWB impulse radio link performance on channel statistics, 2004 IEEE International Conference on Communications (IEEE Cat. No.04CH37577), pp.3566-3570, 2004.
DOI : 10.1109/ICC.2004.1313208

S. Ghassemzadeh, R. Jana, C. Rice, W. Turin, and V. Tarokh, Measurement and Modeling of an Ultra-Wide Bandwidth Indoor Channel, IEEE Transactions on Communications, vol.52, issue.10, pp.1786-1796, 2004.
DOI : 10.1109/TCOMM.2003.820755

D. Cassoli, M. Z. Win, and A. F. Molisch, The ultra-wide bandwidth indoor channel: from statistical model to simulations, IEEE Journal on Selected Areas in Communications, vol.20, issue.6, pp.1247-1257, 2002.
DOI : 10.1109/JSAC.2002.801228

F. Meunier, T. Eriksson, and A. Svensson, On the effect of antennas on UWB systems, Proc. Union Radio Science General Assembly, 2005.

P. Pagani and P. Pajusco, Experimental assessment of the UWB channel variability in a dynamic indoor environment, 2004 IEEE 15th International Symposium on Personal, Indoor and Mobile Radio Communications (IEEE Cat. No.04TH8754), pp.2973-2977, 2004.
DOI : 10.1109/PIMRC.2004.1368865

I. Güvenc and H. Arslan, On the modulation options for UWB systems, Proc. IEEE Military Communications Conference, pp.892-897, 2003.

D. C. Laney, G. M. Maggio, F. Lehmann, and L. Larson, Multiple access for UWB impulse radio with pseudochaotic time hopping, IEEE Journal on Selected Areas in Communications, vol.20, issue.9, pp.1692-1700, 2002.
DOI : 10.1109/JSAC.2002.805062

G. M. Maggio, N. Rulkov, and L. Reggiani, Pseudo-chaotic time hopping for UWB impulse radio, IEEE Transactions on Circuits and Systems I: Fundamental Theory and Applications, vol.48, issue.12, pp.1424-1435, 2001.
DOI : 10.1109/TCSI.2001.972849

D. C. Laney, G. M. Maggio, F. Lehmann, and L. Larson, A pseudo-random time hopping scheme for UWB impulse radio exploiting bit-interleaved coded modulation, Proc. International Workshop on Ultra Wideband Systems, 2003.

J. T. Conroy, J. L. Locicero, and D. R. Ucci, Communication techniques using monopulse waveforms, MILCOM 1999. IEEE Military Communications. Conference Proceedings (Cat. No.99CH36341), 1999.
DOI : 10.1109/MILCOM.1999.821389

L. E. Miller, Models for uwb pulses and their effects on narrowband direct conversion receivers, IEEE Conference on Ultra Wideband Systems and Technologies, 2003, pp.101-105, 2003.
DOI : 10.1109/UWBST.2003.1267811

H. Sheng, P. Orlik, A. M. Haimovich, L. J. Cimini, and J. Zhang, On the spectral and power requirements for ultra-wideband transmission, Proc. IEEE International Conference on Communications, pp.738-742, 2003.

R. Zimmer and P. Waldow, A simple method of generating UWB pulses, Eighth IEEE International Symposium on Spread Spectrum Techniques and Applications, Programme and Book of Abstracts (IEEE Cat. No.04TH8738), pp.112-114, 2004.
DOI : 10.1109/ISSSTA.2004.1371674

M. Ghavami, L. B. Michael, and R. Khono, Hermite function based orthogonal pulses for ultra wideband communications, Proc. Wireless Personal Multimedia Conference, 2001.

M. Ghavami and L. B. Michael, Generation of Hermite based pulse for UWB communication, Sony SRF 2002, 2001.

L. B. Michael, M. Ghavami, and R. Khono, Multiple pulse generator for ultra-wideband communication using Hermite polynomial based orthogonal pulses, 2002 IEEE Conference on Ultra Wideband Systems and Technologies (IEEE Cat. No.02EX580), pp.47-51, 2002.
DOI : 10.1109/UWBST.2002.1006316

J. Zhang, T. D. Abhayapala, and R. A. Kennedy, Role of pulses in ultra wideband systems, Proc. International Conference on Ultra Wideband, pp.565-570, 2005.

B. Parr, B. Cho, K. Wallace, and Z. Ding, A novel ultra-wideband pulse design algorithm, IEEE Communications Letters, vol.7, issue.5, pp.219-221, 2003.
DOI : 10.1109/LCOMM.2003.812167

G. Lu, P. Spasojevic, and L. Greenstein, Antenna and pulse designs for meeting UWB spectrum density requirements, Proc. Conference on Ultra Wideband Systems and Technologies, pp.162-166, 2003.

X. Luo, L. Yang, and G. B. Giannakis, Designing optimal pulse-shapers for ultra-wideband radios, Journal of Communications and Networks, vol.5, issue.4, pp.349-353, 2003.
DOI : 10.1109/JCN.2003.6596616

W. Zou and Z. Zhou, A novel design method for UWB pulse based on the bandwidth constraint, Proc. International Symposium on Communications and Information Technology, pp.1047-1050, 2005.

S. Maddula and S. Chakrabarti, Synthesis of UWB pulse following FCC mask, Proc. Union Radio Science General Assembly, 2005.

J. G. Proakis, Digital Communications, 2000.

M. Z. Win and R. A. Scholtz, On the energy capture of ultrawide bandwidth signals in dense multipath environments, IEEE Communications Letters, vol.2, issue.9, pp.245-247, 1998.
DOI : 10.1109/4234.718491

M. Z. Win, G. Chrisikos, and N. R. Sollenberger, Performance of RAKE reception in dense multipath channels: implications of spreading bandwidth and selection diversity order, IEEE Journal on Selected Areas in Communications, vol.18, issue.8, pp.1516-1525, 2000.
DOI : 10.1109/49.864015

D. Cassioli, M. Win, F. Valataro, and A. F. Molisch, Performance of low-complexity RAKE reception in a realistic UWB channel, 2002 IEEE International Conference on Communications. Conference Proceedings. ICC 2002 (Cat. No.02CH37333), pp.763-767, 2002.
DOI : 10.1109/ICC.2002.996958

J. D. Choi and W. E. Stark, Performance of ultra-wideband communications with suboptimal receivers in multipath channels, IEEE Journal on Selected Areas in Communications, vol.20, issue.9, pp.1754-1766, 2002.
DOI : 10.1109/JSAC.2002.805623

B. Mielczarek, M. Wessman, and A. Svensson, Performance of coherent UWB rake receivers using different channel estimators, Proc. in International Workshop on Ultra Wideband Systems, 2003.

J. Zhang, R. A. Kennedy, and T. D. Abhayapala, Performance of rake reception for ultra wideband signals in a lognormal-fading channel, Proc. in International Workshop on Ultra Wideband Systems, 2003.

H. Urkowitz, Energy detection of unknown deterministic signals, Proceedings of the IEEE, vol.55, issue.4, pp.523-531, 1967.
DOI : 10.1109/PROC.1967.5573

M. Weisenhorn and W. Hirt, Robust non coherent receiver exploiting UWB channel properties, Proc. International Workshop on Ultra Wideband Systems Joint with Conference on Ultra Wideband Systems and Technologies, pp.156-160, 2004.

S. Paquelet, L. Aubert, and B. Uguen, An impulse radio asynchronous transceiver for high data rates, 2004 International Workshop on Ultra Wideband Systems Joint with Conference on Ultra Wideband Systems and Technologies. Joint UWBST & IWUWBS 2004 (IEEE Cat. No.04EX812), pp.1-5, 2004.
DOI : 10.1109/UWBST.2004.1320888

M. E. Sahin, I. Güvenc, and H. Arslan, Optimization of Energy Detector Receivers for UWB Systems, 2005 IEEE 61st Vehicular Technology Conference, pp.1386-1390, 2005.
DOI : 10.1109/VETECS.2005.1543536

M. K. Oh, B. Jung, R. Harjani, and D. J. Park, A new non coherent UWB impulse radio receiver, IEEE Communications letters, vol.9, issue.2, pp.151-153, 2005.

Z. Tian and B. M. Sadler, Weighted energy detection of ultra-wideband signals, Proc. IEEE Signal Processing Workshop on Advances in Wireless Communications, pp.1068-1072, 2005.

R. T. Hoctor and H. W. Tomlinson, An overview of delay-hopped, transmitted-reference RF communications, GE technical Report, 2002.

X. Chen and S. Kiaei, An improved delay-hopped transmitted reference ultra wideband architecture, Proc. IEEE International SOC Conference, pp.359-362, 2004.

A. Trinidade, Q. H. Dang, A. J. Van-der, and . Veen, Signal processing model for a transmittedreference UWB wireless communication systems, Proc. IEEE Conference on Ultra Wideband Systems and Technologies, pp.270-274, 2003.

G. Leus and A. J. Van-der-veen, Noise suppression in UWB transmitted reference systems, Proc. 5 th IEEE Workshop on Signal Processing Advances in Wireless Communications, pp.155-159, 2004.

T. Zasowski, F. Althaus, and A. Wittneben, An energy efficient transmitted-reference scheme for ultra wideband communications, 2004 International Workshop on Ultra Wideband Systems Joint with Conference on Ultra Wideband Systems and Technologies. Joint UWBST & IWUWBS 2004 (IEEE Cat. No.04EX812), pp.146-150, 2004.
DOI : 10.1109/UWBST.2004.1320953

M. Ho, V. Somayazulu, J. Foerster, and S. Roy, A differential detector for an ultra-wideband communications system, Vehicular Technology Conference. IEEE 55th Vehicular Technology Conference. VTC Spring 2002 (Cat. No.02CH37367), pp.6-9, 2002.
DOI : 10.1109/VTC.2002.1002952

M. Pausini and G. J. Janssen, Analysis and comparison of autocorrelation receivers for IR-UWB signals based on differential detection, 2004 IEEE International Conference on Acoustics, Speech, and Signal Processing, pp.513-516, 2004.
DOI : 10.1109/ICASSP.2004.1326876

G. Durisi and S. Benedetto, Comparison between Coherent and Noncoherent Receivers for UWB Communications, EURASIP Journal on Advances in Signal Processing, vol.2005, issue.3, pp.359-368, 2005.
DOI : 10.1155/ASP.2005.359

I. Guvenc, Z. Sahinoglu, and P. V. Orlik, TOA estimation for IR-UWB systems with different transceiver types, IEEE Transactions on Microwave Theory and Techniques, vol.54, issue.4, pp.1876-1886, 2006.
DOI : 10.1109/TMTT.2006.872044

M. Schmidt, D. Simic, and R. Moorfeld, Low complexity low data rate UWB devices ? Architecture and performance comparison, Proc. 14 th IST Mobile & Wireless Communications Summit, 2005.

N. He and C. Tepedelenlioglu, Performance analysis of non coherent UWB receivers at different synchronization levels, Proc. IEEE Global Telecommunications Conference, pp.3517-3521, 2004.

S. Soderi, J. Iinatti, and M. Hämäläinen, CLPDI algorithm in UWB synchronization, Proc. International Workshop on Ultra Wideband Systems, 2003.

C. Carbonelli and U. Mengali, Synchronization algorithms for UWB signals, IEEE Transactions on Communications, vol.54, issue.2, pp.329-338, 2006.
DOI : 10.1109/TCOMM.2005.863728

V. Lottici, A. D-'andrea, and U. Mengali, Channel estimation for ultra-wideband communications, IEEE Journal on Selected Areas in Communications, vol.20, issue.9, pp.1638-1645, 2002.
DOI : 10.1109/JSAC.2002.805053

M. Z. Win and R. A. Scholtz, Characterization of ultra-wide bandwidth wireless indoor channels: a communication-theoretic view, IEEE Journal on Selected Areas in Communications, vol.20, issue.9, pp.1613-1627, 2002.
DOI : 10.1109/JSAC.2002.805031

C. Carbonelli, U. Mengali, and U. Mitra, Synchronization and channel estimation for UWB signals, GLOBECOM '03. IEEE Global Telecommunications Conference (IEEE Cat. No.03CH37489), pp.764-768, 2003.
DOI : 10.1109/GLOCOM.2003.1258341

Z. Wang and X. Yang, Ultra wideband communications with blind channel estimation based on first-order statistics, Proc. International Conference Acoustics, Speech and Signal Processing, 2004.

Q. T. Zhang and S. H. Song, UWB signal detection using Eigen-based receiver, IEEE International Conference on Communications, 2005. ICC 2005. 2005, pp.2867-2871, 2005.
DOI : 10.1109/ICC.2005.1494897

L. Wu, X. Wu, and Z. Tian, Asymptotically optimal UWB receivers with noisy templates : design and comparison with RAKE, IEEE Journal on Selected Areas in Communications, vol.24, issue.4, pp.808-814, 2006.

I. Oppermann, M. Hämäläinen, and J. Iinatti, UWB theory and applications, 2004.
DOI : 10.1002/0470869194

M. G. Di-benedetto and G. Giancola, Understanding ultra wide band radio fundamentals, 2004.

L. Yang and G. B. Giannakis, Ultra-wideband communications - An idea whose time has come, IEEE Signal Processing Magazine, vol.21, issue.6, pp.26-54, 2004.
DOI : 10.1109/MSP.2004.1359140

E. Baccarelli, M. Biaggi, C. Pelizzoni, and P. Bellotti, A Novel Multi-Antenna Impulse Radio UWB Transceiver for Broadband High-Throughput 4G WLANs, IEEE Communications Letters, vol.8, issue.7, pp.419-421, 2004.
DOI : 10.1109/LCOMM.2004.832747

L. Yang and G. B. Giannakis, Analog Space???Time Coding for Multiantenna Ultra-Wideband Transmissions, IEEE Transactions on Communications, vol.52, issue.3, pp.507-517, 2004.
DOI : 10.1109/TCOMM.2004.823644

C. Abou-rjeily, N. Daniele, and J. C. Belfiore, Space-time coding for multiuser Ultra- Wideband communications, IEEE Transactions on Communications, vol.4, issue.11, pp.1960-1972, 2006.

W. P. Siriwongpairat, M. Olfat, K. J. Ray, and . Liu, Performance Analysis and Comparison of Time-Hopping and Direct-Sequence UWB-MIMO Systems, EURASIP Journal on Advances in Signal Processing, vol.2005, issue.3, pp.328-345, 2005.
DOI : 10.1155/ASP.2005.328

U. Caractérisation-des-antennes, 73 3.1. Généralités sur les antennes, p.76

.. Mesure-de-la-distorsion-de-phase, 104 3.5.2. Domaine des temps 104 3.5.3. Eléments de conclusion, p.111

C. A. Balanis, Antenna theory : analysis and design, 1997.

S. J. Orfanidis, Electromagnetic waves and antennas, 2004.

R. P. Meys, A summary of the transmitting and receiving properties of antennas, IEEE Antennas and Propagation Magazine, vol.42, issue.3, pp.49-53, 2000.
DOI : 10.1109/74.848947

J. I. Takada, Review on antenna design and channel characterization of ultra-wideband technologies, Proc. 1 st Engineering/Electronics, Computer, Telecommunications and Information Technology Conference, 2004.

S. Stearns, Antenna impedance models, IEEE Antennas and Propagation Society, 2006.

S. B. Wang, A. M. Niknejad, and R. W. Brodersen, Modeling omnidirectional small antennas for UWB applications, IEEE Antennas and Propagation Society Symposium, 2004., pp.1295-1298, 2004.
DOI : 10.1109/APS.2004.1330422

J. Gerrits, A. Hutter, J. Ayadi, and J. Farserotu, Modeling and simulation of a dipole antenna for UWB applications using equivalent SPICE circuits, Proc. International Workshop on Ultra Wideband Systems, 2003.

I. Pelé, A. Chousseaud, and S. Toulain, Simultaneous modeling of impedance and radiation pattern antenna for UWB pulse modulation, IEEE Antennas and Propagation Society Symposium, 2004., pp.1871-1874, 2004.
DOI : 10.1109/APS.2004.1330566

G. Lu, I. Korisch, L. Greenstein, and P. Spasojevic, Antenna modelling using linear elements with applications to UWB, Proc. IEEE Antennas and Propagation Society International Symposium, pp.2544-2547, 2004.

F. Sagnard and D. L. Ton, Analysis of the Transient Waveforms Radiated by a Combination of Thin-Wire Antennas-Part II: Simulation Results, IEEE Antennas and Wireless Propagation Letters, vol.5, issue.1, pp.209-212, 2006.
DOI : 10.1109/LAWP.2006.875278

S. Promwong and J. I. Takada, Free space link budget estimation scheme for ultra wideband impulse radio with imperfect antennas, IEICE Electronics Express, vol.1, issue.7, pp.188-192, 2004.
DOI : 10.1587/elex.1.188

P. Supanakoon, P. Tangtisanon, S. Promwong, and J. Takada, Accurate analysis of extension of the Friis' transmission formula for UWB channels, Proc. 1 st Engineering/Electronics, Computer, Telecommunications and Information Technology Conference, 2004.

Z. Irahhauten, A. Yarovoy, H. Nikookar, G. J. Janssen, and L. P. Ligthart, The effect of antenna and pulse waveform on ultra wideband link budget with impulse radio transmission, Proc. 34 th European Microwave Conference, pp.113-116, 2004.

C. E. Baum, Time domain characterization of antennas with TEM feeds, Sensor and Simulation Notes, 1998.

S. Zwierzchowski and P. Jazayeri, Derivation and determination of the antenna transfer function for use in ultra-wideband communications analysis, Proc. Wireless 2003, pp.533-543, 2003.

J. Kunisch and . Pamp, UWB radio channel modeling considerations, Proc. V th International Conference on Electromagnetics in Advanced Applications, 2003.

A. H. Mohammadian, A. Rajkotia, and S. S. Soliman, Characterization of UWB transmit-receive antenna system, IEEE Conference on Ultra Wideband Systems and Technologies, 2003, pp.157-161, 2003.
DOI : 10.1109/UWBST.2003.1267823

A. Sibille, About the role of antennas in UWB impulse radio, 2004.

Z. N. Chen, X. H. Wu, H. F. Li, N. Yang, and M. Y. Chia, Considerations for Source Pulses and Antennas in UWB Radio Systems, IEEE Transactions on Antennas and Propagation, vol.52, issue.7, pp.1739-1748, 2004.
DOI : 10.1109/TAP.2004.831405

A. Sibille, A Framework for Analysis of Antenna Effects in UWB Communications, 2005 IEEE 61st Vehicular Technology Conference, pp.48-52, 2005.
DOI : 10.1109/VETECS.2005.1543247

S. Yiqiong, C. L. Aditya, and . Law, Transfer function characterization of UWB antennas based on frequency domain measurement, Proc. 35 th European Microwave Conference, 2005.

X. Qing, Z. N. Chen, and M. Y. Chia, Network approach to UWB antenna transfer function characterization, Proc. 35 th European Microwave Conference, 2005.

W. Sörgel and W. Wiesbeck, Influence of the Antennas on the Ultra-Wideband Transmission, EURASIP Journal on Advances in Signal Processing, vol.2005, issue.3, pp.296-305, 2005.
DOI : 10.1155/ASP.2005.296

P. L. Abrie, Design of RF and microwave amplifiers and oscillators, Artech House, 1999.

M. E. Hines and H. E. Stinehelfer, Time-Domain Oscillographic Microwave Network Analysis Using Frequency-Domain Data, IEEE Transactions on Microwave Theory and Techniques, vol.22, issue.3, 1974.
DOI : 10.1109/TMTT.1974.1128211

W. Sörgel, E. Pivit, and W. Wiesbeck, Comparison of frequency domain and time domain measurements procedures for ultra wideband antennas, Proc. Antenna Measurement and Techniques Association Conference, pp.72-76, 2003.

Z. N. Chen, Novel bi-arm rolled monopole for UWB applications, IEEE Transactions on Antennas and Propagation, vol.53, issue.2, pp.672-677, 2005.
DOI : 10.1109/TAP.2004.841285

A. Shlivinski and E. Heyman, Antenna characterization in the time domain, IEEE Transactions on Antennas and Propagation, vol.45, issue.7, pp.1140-1149, 1997.
DOI : 10.1109/8.596907

C. Roblin, S. Bories, and A. Sibille, Characterization tools of antennas in the time domain, Proc. in International Workshop on Ultra Wideband Systems, 2003.

O. E. Allen, D. A. Hill, and A. R. Ondrejka, Time-domain antenna characterizations, IEEE Transactions on Electromagnetic Compatibility, vol.35, issue.3, pp.339-346, 1993.
DOI : 10.1109/15.277308

D. Lamensdorf and L. Susman, Baseband-pulse-antenna techniques, IEEE Antennas and Propagation Magazine, vol.36, issue.1, pp.20-30, 1994.
DOI : 10.1109/74.262629

S. H. Choi, J. K. Park, S. K. Kim, and J. Y. Park, A new ultra-wideband antenna for UWB applications, Microwave and Optical Technology Letters, vol.19, issue.5, pp.399-401, 2004.
DOI : 10.1002/mop.11392

T. P. Vuong, Y. Duroc, D. Bechevet, F. Roudet, S. Tedjini et al., Conception d'une antenne ultra large bande, Proc. 18ème colloque international Optique Hertzienne et Diélectrique, 2005.
URL : https://hal.archives-ouvertes.fr/hal-00329481

T. P. Vuong, A. Ghiotto, Y. Duroc, and S. Tedjini, Design and characteristics of a small Uslotted planar antenna for IR-UWB " , Microwave and Optical Technology Letters, 2006.

.. Méthode-de-prony-et-variantes, 131 4.2.2. Préliminaire et formulation du problème

.. Méthode-de-tufts-kumaresan, 136 4.3. Méthode Matrix Pencil 137 4.3.2. Fondements théoriques dans le cas où les données sont non bruitées, Prony

L. Ljung, System Identification : Theory for the User, 1987.

E. K. Miller, T. K. Sarkar, and R. Stone, An introduction to the use of model-based parameter estimation in electromagnetics, Review of Radio Science, 1996.

A. Ducasse, C. Mailhes, and F. Castanié, Estimation de fréquences : panorama des méthodes paramétriques, Traitement du Signal, vol.15, issue.2, pp.149-162, 1998.

. Calliope, La parole et son traitement automatique, 1989.

G. Riche-de-prony, Essai expérimental et analytique sur les lois de la dilatabilité de fluides élastiques et sur celles de la force expansive de la vapeur d'eau et de la vapeur d'alkool, à différentes températures, Journal de l'Ecole Polytechnique Floréal et Plairial, an III (1795)

D. W. Tufts and R. Kumaresan, Improved spectral resolution, Proc. IEEE Conference On Acoustics Speech and Signal Processing, pp.592-597, 1980.

Y. Hua and T. K. Sarkar, Generalized pencil-of-function method for extracting poles of an EM system from its transient response, IEEE Transactions on Antennas and Propagation, vol.37, issue.2, pp.229-234, 1989.
DOI : 10.1109/8.18710

C. Brezinski, Padé-type approximation and general orthogonal polynomials, Birkhäuser, vol.50, 1980.
DOI : 10.1007/978-3-0348-6558-6

E. C. Levi, Complex-curve fitting, IRE Transactions on Automatic Control, vol.4, issue.1, 1959.
DOI : 10.1109/TAC.1959.6429401

R. S. Adve, T. K. Sarkar, S. M. Rao, E. K. Miller, and D. R. Pflug, Application of the Cauchy method for extrapolating/interpolating narrowband system responses, IEEE Transactions on Microwave Theory and Techniques, vol.45, issue.5, pp.837-845, 1997.
DOI : 10.1109/22.575608

T. W. Parks and C. S. Burrus, Digital Filter Design, 1987.

I. Pelé, A. Chousseaud, and S. Toulain, Simultaneous modeling of impedance and radiation pattern antenna for UWB pulse modulation, IEEE Antennas and Propagation Society Symposium, 2004., pp.1871-1874, 2004.
DOI : 10.1109/APS.2004.1330566

C. Roblin, S. Bories, A. Sibille, A. C. Lepage, and X. Begaud, Antenna design, analysis and numerical modeling for impulse UWB, Proc. International Symposium on Wireless Personal Multimedia Communication, 2004.

Z. Zhang and Y. H. Lee, A comprehensive system based UWB antenna optimizer, Union of Radio Science General Assembly, 2005.

S. Licul and W. A. Davis, Unified frequency and time-domain antenna modeling and characterization, IEEE Transactions on Antennas and Propagation, vol.53, issue.9, pp.2882-2888, 2005.
DOI : 10.1109/TAP.2005.854533

Y. Duroc, T. P. Vuong, and S. Tedjini, Realistic modeling of antennas for ultra wide band systems, 2006 IEEE Radio and Wireless Symposium, pp.347-350, 2006.
DOI : 10.1109/RWS.2006.1615166

R. J. Allard, D. H. Werner, J. S. Zmyslo, and P. L. Werner, Model-based parameter estimation of antenna radiation pattern frequency spectra, IEEE Antennas and Propagation Society International Symposium. 1998 Digest. Antennas: Gateways to the Global Network. Held in conjunction with: USNC/URSI National Radio Science Meeting (Cat. No.98CH36194), pp.62-65, 1998.
DOI : 10.1109/APS.1998.699059

G. H. Golub and V. Pereira, The difference of pseudo inverses and non-linear least squares problems whose variables separate, SIAM, Journal on Numerical Analysis, 1973.

M. L. Van-blaricum and R. Mittra, Problems and solutions associated with Prony's method for processing transient data, IEEE Transactions on Antennas and Propagation, vol.26, issue.1, pp.174-182, 1978.
DOI : 10.1109/TAP.1978.1141804

D. W. Tufts, R. Kumaresan, and I. Kirstein, Data adaptative signal estimation by singular value decomposition of a data matrix, IEEE Special Issue Spectral Estimation, vol.70, pp.684-685, 1982.

T. K. Sarkar and O. Pereira, Using the matrix pencil method to estimate the parameters of a sum of complex exponentials, IEEE Antennas and Propagation Magazine, vol.37, issue.1, pp.48-55, 1995.
DOI : 10.1109/74.370583

Y. Hua and T. K. Sarkar, On SVD for estimating generalized eigenvalues of singular matrix pencil in noise, IEEE Transactions on Signal Processing, vol.39, issue.4, pp.39-44, 1991.

Y. Hua and T. K. Sarkar, Matrix pencil method for estimating parameters of exponentially damped/undamped sinusoids in noise, IEEE Transactions on Acoustics, Speech, and Signal Processing, vol.38, issue.5, pp.814-824, 1990.
DOI : 10.1109/29.56027

B. Porat and B. Friedlander, A modification of the Kumaresan-Tufts methods for estimating rational impulse responses, IEEE Transactions on Acoustics, Speech, and Signal Processing, vol.34, issue.5, pp.1336-1338, 1986.
DOI : 10.1109/TASSP.1986.1164934

F. Hu, T. K. Sarkar, and Y. Hua, Utilization of bandpass filtering for the Matrix Pencil method, IEEE Transactions on Signal Processing, vol.41, issue.1, 1991.

J. A. Cadzow, Signal enhancement-a composite property mapping algorithm, IEEE Transactions on Acoustics, Speech, and Signal Processing, vol.36, issue.1, pp.49-62, 1988.
DOI : 10.1109/29.1488

Y. Li, J. R. Liu, and J. Razavilar, A parameter estimation scheme for damped sinusoidal signals based on low-rank Hankel approximation, IEEE Transactions on Signal Processing, vol.45, issue.2, pp.481-486, 1997.
DOI : 10.1109/78.554314

B. Lu, D. Wei, B. L. Evans, and A. C. Bovik, Improved Matrix Pencil methods, Proc. Conference on Signals, Systems and Computers, pp.1433-1437, 1998.

B. Porat and B. Friedlander, On the accuracy of the Kumaresan-Tufts method for estimating complex damped exponentials, IEEE Transactions on Acoustics, Speech, and Signal Processing, vol.35, issue.2, pp.231-235, 0987.
DOI : 10.1109/TASSP.1987.1165121

Y. Hua and T. K. Sarkar, Matrix pencil method and its performance, ICASSP-88., International Conference on Acoustics, Speech, and Signal Processing, pp.2476-2479, 1998.
DOI : 10.1109/ICASSP.1988.197145

C. E. Baum, Time domain characterization of antennas with TEM feeds, Sensor and Simulation Notes, 1998.

T. K. Sarkar, F. Hu, Y. Hua, and M. Wicks, A real-time signal processing technique approximation a function by a sum of complex exponentials utilizing the Matrix-Pencil approach, Digital Signal Processing, vol.4, 1994.

Z. A. Maricevic, T. K. Sarkar, Y. Hua, and A. R. Djordjevic, Time-domain measurements with the Hewlett-Packard network analyzer HP 8510 using the matrix pencil method, IEEE Transactions on Microwave Theory and Techniques, vol.39, issue.3, pp.538-547, 1991.
DOI : 10.1109/22.75298

C. Roblin, Ultra compressed parametric modelling of UWB antenna measurements, 2006 First European Conference on Antennas and Propagation, p.5, 2006.
DOI : 10.1109/EUCAP.2006.4584477

. Systèmes, U. Antennes, .. Co-design, .. De-la-problématique, and .. De-foster, 164 5.2. Approches orientées co-design pour modéliser les antennes 164 5.3. Modélisation de l'impédance par circuit électrique équivalent 166 5.3.2. Rappels sur les méthodes de synthèse, 176 5.5. Conclusion, p.177

I. Pelé, A. Chousseaud, and S. Toulain, Simultaneous modeling of impedance and radiation pattern antenna for UWB pulse modulation, IEEE Antennas and Propagation Society Symposium, 2004., pp.1871-1874, 2004.
DOI : 10.1109/APS.2004.1330566

J. Shen, Y. Wang, and X. Zhu, A new method of modeling linear dipole antennas for UWB applications, 2005 2nd Asia Pacific Conference on Mobile Technology, Applications and Systems, pp.1-4, 2005.
DOI : 10.1109/MTAS.2005.243887

M. Demirkan and R. R. Spencer, UWB Antenna Characterization for Circuit Design, 2005 IEEE International Conference on Ultra-Wideband, 2005.
DOI : 10.1109/ICU.2005.1569999

D. Prête, Antennes, 2004.

S. B. Wang, A. L. Niknejad, and R. W. Brodersen, Circuit modeling methodology for UWB omnidirectional small antennas, IEEE Journal on Selected Areas in Communications, vol.24, issue.4, pp.871-877, 2006.
DOI : 10.1109/JSAC.2005.863873

URL : http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.140.7203

F. Gauthier, Les outils de conception RF et hyper, Electronique, pp.73-79, 2004.

R. Ahola, D. Wallner, and M. Sida, Bluetooth Transceiver Design with VHDL-AMS, Proc. Conference on Design, Automation and Test in Europe, pp.268-273, 2003.
DOI : 10.1109/date.2003.1186707

P. V. Nikitin, E. Normark, C. Wakayama, and C. R. Shi, VHDL-AMS modeling and simulation of BPSK transceiver system, Proc. IEEE International Conference on Circuits and Systems for Communications, 2004.

M. Crepaldi, M. R. Casu, and M. Graziano, Energy detection UWB receiver design using a multi-resolution VHDL-AMS description, IEEE Workshop on Signal Processing Systems Design and Implementation, 2005., pp.13-18, 2005.
DOI : 10.1109/SIPS.2005.1579831

R. Khouri, V. Beroulle, T. Vuong, and S. Tedjini, Wireless System Validation using VHDL- AMS Behavioral Antenna Models : Radio-Frequency Identification case study, Proc. 7 th European Conference on Wireless Technology, pp.185-188, 2004.
URL : https://hal.archives-ouvertes.fr/hal-00261738

Y. Hervé, VHDL AMS : Un atout pour la conception système, Colloque sur le Traitement Analogique de l'Information du Signal et ses Applications (TAISA), 2002.

A. Serres, Y. Duroc, T. P. Vuong, J. E. De-farias, and G. Fontgalland, A New Simple UWB Monocycle Pulse Generator, 2006 13th IEEE International Conference on Electronics, Circuits and Systems, 2006.
DOI : 10.1109/ICECS.2006.379679

URL : https://hal.archives-ouvertes.fr/hal-00329484

Y. Zhang and A. K. Brown, The discone antenna in a BPSK direct-sequence indoor UWB communication system, IEEE Transactions on Microwave Theory and Techniques, vol.54, issue.4, pp.1675-1680, 2006.
DOI : 10.1109/TMTT.2006.872049

A. Sibille, Role of joint antenna-channel dispersions on UWB energy capture in pulsed schemes, 2006 IEEE International Conference on Ultra-Wideband, pp.207-211, 2006.
DOI : 10.1109/ICU.2006.281551

A. Sibille, A Channel-Based Statistical Approach to Antenna Performance in UWB Communications, IEEE Transactions on Antennas and Propagation, vol.54, issue.11, pp.3207-3215, 2006.
DOI : 10.1109/TAP.2006.883993

URL : https://hal.archives-ouvertes.fr/hal-00847915

J. Foerster and Q. Li, UWB channel modeling contribution from Intel, Project IEEE P802.15 Working Group for Wireless Personal Area Network, 2004.

A. F. Molisch and J. Foerster, Channel models for ultrawideband personal area networks, IEEE Wireless Communications, vol.10, issue.6, pp.14-21, 2003.
DOI : 10.1109/MWC.2003.1265848

URL : http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.320.3390

A. Saleh and R. Valenzuela, A Statistical Model for Indoor Multipath Propagation, IEEE Journal on Selected Areas in Communications, vol.5, issue.2, pp.128-137, 1987.
DOI : 10.1109/JSAC.1987.1146527

J. G. Proakis, Digital Communications, Mc Graw Hill International, 4° édition, 2000.

[. L. Abrie, Design of RF and microwave amplifiers and oscillators, Artech House, 1999.

H. Hewlett and P. Company, S-Parameter techniques for faster, more accurate network design, Test and Measurement, pp.95-96, 1997.

L. Chusseau, Hyperfréquence : Paramètres S ? Antennes, 2005.

D. Courivaud, S. Groupe, and E. , Micro-ondes, 2002.

I. Opperman, M. Hämäläinen, and J. Iinatti, UWB theory and applications, 2004.
DOI : 10.1002/0470869194

N. Fortino, G. Kossiavas, J. Y. Dauvignac, R. Staraj, C. Delaveaud et al., Conception d'antennes pour systèmes de communication ultra large bande, Journée SEE, 2005.

H. G. Schantz, The art and science of ultrawideband antennas, 2005.

H. G. Schantz, Introduction to ultra-wideband antennas, IEEE Conference on Ultra Wideband Systems and Technologies, 2003, pp.1-9, 2003.
DOI : 10.1109/UWBST.2003.1267792

URL : http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.205.4645

. Bibliographie, Riche de Prony Essai expérimental et analytique sur les lois de la dilatabilité de fluides élastiques et sur celles de la force expansive de la vapeur d'eau et de la vapeur d'alkool, à différentes températures, Journal de l'Ecole Polytechnique Floréal et Plairial, an III (1795)

P. Stoica and A. Nehorai, Study of the statistical performance of the Pisarenko harmonic decomposition method, IEE Proceedings Radar and Signal Processing, pp.161-168, 1988.
DOI : 10.1049/ip-f-1.1988.0022

A. Kot, S. Parthasarathy, D. Tufts, and R. Vaccaro, The statistical performance of state-variable balancing and Prony's method in parameter estimation, ICASSP '87. IEEE International Conference on Acoustics, Speech, and Signal Processing, pp.1549-1552, 1987.
DOI : 10.1109/ICASSP.1987.1169515

Y. Hua and T. K. Sarkar, Matrix pencil method for estimating parameters of exponentially damped/undamped sinusoids in noise, IEEE Transactions on Acoustics, Speech, and Signal Processing, vol.38, issue.5, pp.814-824, 1990.
DOI : 10.1109/29.56027

R. Kumaresan and R. W. Tufts, Estimating the parameters of exponentially damped sinusoids and pole-zero modeling in noise, IEEE Transactions on Acoustics, Speech, and Signal Processing, vol.30, issue.6, pp.833-840, 1982.
DOI : 10.1109/TASSP.1982.1163974

H. Akaike, Information theory and an extension of the maximum likelihood principle, Proc. 2 nd International Symposium on Information Theory, 1973.

M. Wax and T. Kailath, Detection of signals by information theoretic criteria, IEEE Transactions on Acoustics, Speech, and Signal Processing, vol.33, issue.2, pp.387-392, 1985.
DOI : 10.1109/TASSP.1985.1164557

. Repose-toi-d-'avoir-bien and . Fait, et laisse les autres dire de toi ce qu'ils veulent Pythagore Liste des Publications * : en relation directe avec les travaux de recherche présentés dans cette thèse ** : autres collaborations de l'équipe sur la technologie UWB Revues internationales à comité de lecture UWB Antennas : Systems with transfer function and impulse response, IEEE Transactions on Antennas and Propagation, vol.55, issue.5, 2007.

*. Y. Duroc, T. P. Vuong, and S. Tedjini, Realistic and effective modeling of ultra wideband antennas, IEEE Transactions on Antennas and Propagation

*. Y. Duroc, A. Ghiotto, T. P. Vuong, and S. Tedjini, On the modelization of Ultra-Wideband antennas, IEEE Transactions on Antennas and Propagation
URL : https://hal.archives-ouvertes.fr/hal-00329486

*. , T. P. Vuong, A. Ghiotto, Y. Duroc, and S. Tedjini, Design and characteristics of a small U-slotted planar antenna for IR- UWB, Microwave and Optical Technology Letters
URL : https://hal.archives-ouvertes.fr/hal-00329477

*. Y. En-soumission, A. Duroc, T. P. Ghiotto, S. Vuong, and . Tedjini, On the characterization of Ultra-Wideband antennas, IEEE Transactions on Antennas and Propagation, 2006.

*. Y. Congrès-internationaux-avec-comité-de-sélection, T. P. Duroc, S. Vuong, and . Tedjini, Realistic modeling of antennas for ultra wideband systems, IEEE Radio and Wireless Symposium, 2006.

*. A. Serres, Y. Duroc, T. P. Vuong, J. E. De-farias, and G. Fontgalland, A New Simple UWB Monocycle Pulse Generator, 2006 13th IEEE International Conference on Electronics, Circuits and Systems, p.2006
DOI : 10.1109/ICECS.2006.379679

URL : https://hal.archives-ouvertes.fr/hal-00329484

*. , T. P. Vuong, Y. Duroc, S. Tedjini, and G. Fontgalland, Co-design planar antenna for UWB, Progress In Electromagnetics Research Symposium, 2006.
URL : https://hal.archives-ouvertes.fr/hal-00377815

*. , T. P. Vuong, Y. Duroc, D. Bechevet, F. Roudet et al., Conception d'une antenne ultra large bande, 18ème colloque international Optique Hertzienne et Diélectrique, p.2005
URL : https://hal.archives-ouvertes.fr/hal-00329481

*. Y. En-soumission, R. Duroc, V. Khouri, T. P. Beroulle, S. Vuong et al., Considerations on the Characterization and the Modelization of Ultra-Wideband Antennas, IEEE International Conference on UWB, 2007.

*. J. Congrès-internationaux-avec-comité-de-sélection, A. De-farias, G. Serres, Y. Fontgalland, T. P. Duroc et al., Gerardor de pulsos monociclo para um sistema radio UWB, XXII Symposio Brasilero de telecomunicacoes, 2005.

*. Y. Duroc, T. P. Vuong, R. Khouri, V. Beroulle, and S. Tedjini, Modélisation des antennes UWB et co-design, 2006.