Experimental Characterization and Analysis for Ultra Wideband Outdoor Channel

被引:13
作者
Al-Samman, Ahmed M. [1 ]
Abd Rahman, Tharek [1 ]
Nunoo, Solomon [1 ]
Chude-Okonkwo, Uche A. K. [1 ]
Ngah, Razali [1 ]
Shaddad, Redhwan Q. [1 ]
Zahedi, Yasser [1 ]
机构
[1] UTM, Wireless Commun Ctr, Skudai 81310, Johor, Malaysia
关键词
UWB channel measurement; Time dispersion; Path loss; Capacity; Ricean K-factor; INDOOR RADIO CHANNEL; NARROW-BAND; PROPAGATION; MODEL;
D O I
10.1007/s11277-015-2585-x
中图分类号
TN [电子技术、通信技术];
学科分类号
0809 ;
摘要
This paper reports on an experimental characterization of ultra wideband (UWB) outdoor channel over a frequency range of 3.1-5.3 GHz. Time domain measurements were conducted for line-of-sight scenarios. The acquired measurement data are characterized in terms of path-loss exponents, root mean square (RMS) delay spread, K-factor and channel capacity. Results show that the path-loss exponents range between 1.4 and 2.1 for the log-distance propagation model and the RMS delay spread was found to be between 1.2 and 3.4 ns. Different statistical distributions for the delay spread were also investigated. Results of the statistical analysis also show that the correlation between RMS delay spread and transmitter receiver separation distance is very low. The small-scale fading analysis indicated that UWB signals experience Rician fading, where the maximum value of K-factor is 11 dB.
引用
收藏
页码:3103 / 3118
页数:16
相关论文
共 41 条
  • [1] Statistical modeling of the indoor radio channel at 10 GHz through propagation measurements - Part I: Narrow-band measurements and modeling
    Abouraddy, AF
    Elnoubi, SM
    [J]. IEEE TRANSACTIONS ON VEHICULAR TECHNOLOGY, 2000, 49 (05) : 1491 - 1507
  • [2] Characterization of Low-Antenna Ultrawideband Propagation in a Forest Environment
    Anderson, Christopher R.
    Volos, Haris I.
    Buehrer, R. Michael
    [J]. IEEE TRANSACTIONS ON VEHICULAR TECHNOLOGY, 2013, 62 (07) : 2878 - 2895
  • [3] A novel 3-D indoor ray-tracing propagation model: The path generator and evaluation of narrow-band and wide-band predictions
    Athanasiadou, GE
    Nix, AR
    [J]. IEEE TRANSACTIONS ON VEHICULAR TECHNOLOGY, 2000, 49 (04) : 1152 - 1168
  • [4] Cavalcanti D., 2002, P IASTED INT C WIR O
  • [5] Coulibaly Y, 2013, PROC EUR CONF ANTENN, P2331
  • [6] Evaluation of an ultra-wide-band propagation channel
    Cramer, JM
    Scholtz, RA
    Win, MZ
    [J]. IEEE TRANSACTIONS ON ANTENNAS AND PROPAGATION, 2002, 50 (05) : 561 - 570
  • [7] Sounding and modelling of the ultra wide-band channel in outdoor scenarios
    Di Francesco, A
    Di Renzo, M
    Feliziani, M
    Graziosi, F
    Manzi, G
    Santucci, F
    Minutolo, R
    Presaghi, R
    [J]. 2005 2ND INTERNATIONAL WORKSHOP NETWORKING WITH ULTRA WIDE BAND - WORKSHOP ON ULTRA WIDE BAND FOR SENSOR NETWORKS, 2005, : 20 - 24
  • [8] The ultra-wide bandwidth outdoor channel: From measurement campaign to statistical modelling
    Di Renzo, Marco
    Graziosi, Fabio
    Minutolo, Riccardo
    Montanari, Mauro
    Santucci, Fortunato
    [J]. MOBILE NETWORKS & APPLICATIONS, 2006, 11 (04) : 451 - 467
  • [9] The UWB indoor channel: Large and small scale modeling
    Donlan, Brian M.
    McKinstry, David R.
    Buehrer, R. Michael
    [J]. IEEE TRANSACTIONS ON WIRELESS COMMUNICATIONS, 2006, 5 (10) : 2863 - 2873
  • [10] The infostations challenge:: Balancing cost and ubiquity in delivering wireless data
    Frenkiel, RH
    Badrinath, BR
    Borràs, J
    Yates, RD
    [J]. IEEE PERSONAL COMMUNICATIONS, 2000, 7 (02): : 66 - 71