The dependence of small-scale fading on bandwidth is quantified experimentally in the 3.1-10.6GHz band for indoor channels. The fade depth converges to 4dB at 1GHz bandwidth, with little reduction for further increase in bandwidth. A simple yet accurate empirical fade depth model is developed, enabling convenient evaluation of the link budget for a channel with given bandwidth
Simultaneous measurements with 10 MHz bandwidth at 2.5, 3.5 and 5.8 GHz were performed in a rural/se...
We present and discuss results from an experimental characterization of the W-band indoor wireless c...
Recently, high frequency bands (above 6 GHz) have attracted more attention for the next generation c...
The dependence of small-scale fading on bandwidth is quantified experimentally in the 3.1-10.6GHz ba...
In this paper, the relation between small-scale fade depth and channel bandwidth in an indoor envir...
This paper investigates the impact of channel bandwidth on fading in wireless channels using indoor ...
In this letter, the variations of the ultra-wideband (UWB) channel power as a function of the chann...
An exhaustive analysis of the small-scale fading amplitude in the 60 GHz band is addressed for line-...
NSF Research Experience for Undergraduates Symposium, Atlanta GA, August 1, 2007
Current problem in real life WSN deployment is determining fade depth in indoor propagation scenario...
We perform statistical characterization of the wireless channel between the low-power transmitter an...
Accurate characterization of wireless small-scale fading is of growing interest to wireless modem de...
An exhaustive analysis of the small-scale fading amplitude in the 60GHz band is addressed for line-o...
A time-domain technique for fading depth characterisation in wideband Rayleigh and Ricean environmen...
Abstract — It is well known that MIMO systems offer the promise of achieving very high spectrum effi...
Simultaneous measurements with 10 MHz bandwidth at 2.5, 3.5 and 5.8 GHz were performed in a rural/se...
We present and discuss results from an experimental characterization of the W-band indoor wireless c...
Recently, high frequency bands (above 6 GHz) have attracted more attention for the next generation c...
The dependence of small-scale fading on bandwidth is quantified experimentally in the 3.1-10.6GHz ba...
In this paper, the relation between small-scale fade depth and channel bandwidth in an indoor envir...
This paper investigates the impact of channel bandwidth on fading in wireless channels using indoor ...
In this letter, the variations of the ultra-wideband (UWB) channel power as a function of the chann...
An exhaustive analysis of the small-scale fading amplitude in the 60 GHz band is addressed for line-...
NSF Research Experience for Undergraduates Symposium, Atlanta GA, August 1, 2007
Current problem in real life WSN deployment is determining fade depth in indoor propagation scenario...
We perform statistical characterization of the wireless channel between the low-power transmitter an...
Accurate characterization of wireless small-scale fading is of growing interest to wireless modem de...
An exhaustive analysis of the small-scale fading amplitude in the 60GHz band is addressed for line-o...
A time-domain technique for fading depth characterisation in wideband Rayleigh and Ricean environmen...
Abstract — It is well known that MIMO systems offer the promise of achieving very high spectrum effi...
Simultaneous measurements with 10 MHz bandwidth at 2.5, 3.5 and 5.8 GHz were performed in a rural/se...
We present and discuss results from an experimental characterization of the W-band indoor wireless c...
Recently, high frequency bands (above 6 GHz) have attracted more attention for the next generation c...