O. R. Sparrow, High rate UWB CMOS transceiver chipset for WBAN and biomedical applications, Analog Integr. Circuits Signal Process, vol.81, issue.1, pp.215-227, 2014.
URL : https://hal.archives-ouvertes.fr/hal-01435829

R. Vauche, High efficiency UWB pulse generator for ultra-lowpower applications, Int. J. Microw. Wireless Technol, vol.8, issue.3, pp.495-503, 2016.

S. Roy, J. R. Foerster, V. S. Somayazulu, and D. G. Leeper, Ultrawideband radio design: The promise of high-speed, short-range wireless connectivity, Proc. IEEE, vol.92, pp.295-311, 2004.

S. Geng, D. Liu, Y. Li, H. Zhuo, W. Rhee et al., 9.2 A 13.3mW 500Mb/s IR-UWB transceiver with link-margin enhancement technique for meter-range communications, IEEE Int. Solid-State Circuits Conf. Dig. Tech. Papers (ISSCC), pp.160-161, 2014.
URL : https://hal.archives-ouvertes.fr/in2p3-00605336

D. Dardari, A. Conti, U. Ferner, A. Giorgetti, and M. Z. Win, Ranging with ultrawide bandwidth signals in multipath environments, Proc. IEEE, vol.97, pp.404-426, 2009.

, Revision of Part 15 of the Commission's Rules Regarding UltraWideband Transmission Systems, document ET-Docket FCC, 2002.

, Wireless Medium Access Control (MAC) and Physical Layer (PHY) Specifications for Low-Rate Wireless Personal Area Networks (WPANs), IEEE Standard 802, IEEE Standard for Information Technology-Telecommunications and Information Exchange Between Systems-Local and Metropolitan Area Networks-Specific Requirement Part, vol.15, pp.1-203, 2007.

J. B. Radic, A. Djugova, L. F. Nagy, and M. S. Misic, A 3.1-6.65 GHz, 933 ?W impulse radio pulse generator with tuneable spectrum in 0.18 ?m CMOS, Proc. Telecommun. Modern Satellite, vol.2, pp.378-382, 2013.

, Power spectrum estimation, Nat. Semicond, 1980.

M. Z. Win, Spectral density of random time-hopping spread-spectrum UWB signals with uniform timing jitter, Proc. IEEE Military Commun. Conf. (MILCOM), vol.2, pp.1196-1200, 1999.

S. Majhi, A. S. Madhukumar, Y. Nasser, and J. F. Helard, Power spectral analysis of orthogonal pulse-based TH-UWB signals, Proc. IEEE 71st Veh. Technol. Conf. (VTC-Spring), pp.1-5, 2010.
URL : https://hal.archives-ouvertes.fr/hal-00511487

J. G. Proakis, Characterization of communication signals and systems, Digital Communications (Electrical and Computer Engineering), pp.148-222, 2007.

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 Int. Conf. Commun. (ICC), vol.1, pp.738-742, 2003.

W. Gao, R. Venkatesan, and C. Li, A pulse shape design method for ultra-wideband communications, Proc. IEEE Wireless Commun. Netw. Conf. (WCNC), pp.2800-2805, 2007.

J. Hu, T. Jiang, Z. Cui, and Y. Hou, Design of UWB pulses based on Gaussian pulse, Proc. 3rd IEEE Int. Conf. Nano/Micro Eng. Molecular Syst, pp.651-655, 2008.

B. Hu and N. C. Beaulieu, Pulse shapes for ultrawideband communication systems, IEEE Trans. Wireless Commun, vol.4, issue.4, pp.1789-1797, 2005.

D. Adhikari and C. Bhattacharya, Power spectral density of modified Hermite pulses for M-ary pulse shape modulation, Proc. Int. Conf. Commun. Devices Intell. Syst. (CODIS), pp.13-16, 2012.

S. Gezici, Z. Sahinoglu, H. Kobayashi, and H. V. Poor, Ultra-wideband impulse radio systems with multiple pulse types, IEEE J. Sel. Areas Commun, vol.24, issue.4, pp.892-898, 2006.

X. Liu, A. B. Premkumar, and A. S. Madhukumar, Pulse shaping functions for UWB systems, IEEE Trans. Wireless Commun, vol.7, issue.5, pp.1512-1516, 2008.

V. Goyal and B. S. Dhaliwal, Optimal pulse generation for the improvement of ultra wideband system performance, Proc. IEEE Recent Adv, pp.1-6, 2014.

Z. Bai, J. Liu, and H. Chen, Design of ultra-wideband pulses based on spectrum shifted Gaussian waveforms, IET Commun, vol.7, issue.6, pp.512-520, 2013.

M. B. Menon, A. Gopakumar, and N. V. , A hybrid approach for UWB pulse shaping, Proc. 2nd Int. Conf. Electron. Commun. Syst. (ICECS), pp.373-377, 2015.

S. H. Barboza, J. A. Palacio, E. Pontes, and S. T. Kofuji, Fifth derivative Gaussian pulse generator for UWB breast cancer detection system, Proc. IEEE Int. Conf. Ultra-WideBand (ICUWB), pp.269-273, 2014.

R. Vauche, S. Bourdel, N. Dehaese, O. Fourquin, and J. Gaubert, Fully tunable UWB pulse generator with zero DC power consumption, Proc. IEEE Int. Conf. Ultra-Wideband (ICUWB), pp.418-422, 2009.
URL : https://hal.archives-ouvertes.fr/hal-01704302

I. Barraj, H. Trabelsi, and M. Masmoudi, A new UWB pulse shaping for IEEE 802.15.4a, Proc. 10th Int. Multi-Conf. Syst. Signals Devices (SSD), pp.1-5, 2013.

G. Masson, F. Hameau, and L. Ouvry, UWB pulse generator, 2015.

J. Li, W. Rhee, and Z. Wang, A dual-carrier IR-based UWB transmitter with improved spectral efficiency, Proc. Int. Conf. Commun. Circuits Syst. (ICCCAS), pp.788-792, 2009.

M. K. Kang and T. W. Kim, CMOS IR-UWB receiver for ±9.7-mm range finding in a multipath environment, IEEE Trans. Circuits Syst. II, Exp. Briefs, vol.59, issue.9, pp.538-542, 2012.

M. A. Jazairli and D. Flandre, An ultra-low-power UWB IR pulse receiver using 65nm CMOS technology, Proc. IEEE Faible Tension Faible Consommation (FTFC), pp.1-4, 2013.

N. Dehaese, Low-power CMOS energy detector for noncoherent impulse-radio UWB receivers, Proc. IEEE Int. Conf. UltraWideband (ICUWB), pp.1-4, 2010.
URL : https://hal.archives-ouvertes.fr/hal-01704305

M. Demirkan and R. R. Spencer, A pulse-based ultra-wideband transmitter in 90-nm CMOS for WPANs, IEEE J. Solid-State Circuits, vol.43, issue.12, pp.2820-2828, 2008.

J. Li, B. Zhou, Y. Sun, W. Rhee, and Z. Wang, Reconfigurable, spectrally efficient, high data rate IR-UWB transmitter design using a ?-? PLL driven ILO and a 7-tap FIR filter, Proc. Int. Symp. VLSI Design Autom. Test (VLSI-DAT), pp.1-4, 2011.

G. Liang, C. Shih, R. S. Withers, B. F. Cole, and M. E. Johansson, Space-qualified superconductive digital instantaneous frequency-measurement subsystem, IEEE Trans. Microw. Theory Techn, vol.44, issue.7, pp.1289-1299, 1996.

W. Khalil, B. Bakkaloglu, and S. Kiaei, A self-calibrated on-chip phase-noise measurement circuit with ?75 dBc single-tone sensitivity at 100 kHz offset, IEEE J. Solid-State Circuits, vol.42, issue.12, pp.2758-2765, 2007.

E. Hermanowicz, M. Rojewski, G. D. Cain, and A. Tarczynski, On an instantaneous frequency estimator with FIR filters having maximally flat frequency response error magnitude, Signal Process, vol.81, issue.7, pp.1491-1501, 2001.