Temporal autocorrelation of the dynamic on-body radio channel is characterised empirically and theoretically based on measurements. The channel coherence time is found to be approximately 20 to 70ms for a human subject either walking or running. Using a Weibull distribution approximation to the channel taps there is a fair match between empirical and theoretical results for large correlation coefficients
In wireless body area networks, on-body radio propagation channels are typically time-varying, becau...
Time selective fading investigations based on 3.5-GHz SISO narrowband envelope data are carried out ...
Modeling of on-body propagation channels is of paramount importance to those wishing to evaluate rad...
To investigate on-body channel space-time correlation characteristics in various walking scenarios, ...
Starting from a real-time dynamic measurement campaign performed at 2.45 GHz, this paper presents th...
This paper analyzes the temporal correlation properties of mobile-to-mobile (M2M) channels, based on...
On-body radio channel modeling and measurement has been studied extensively. However, the spatial co...
This paper analyzes the time correlation properties of vehicle-to-pedestrian (V2P) channels based on...
Comprehensive statistical characterizations of the dynamic narrowband on-body area and on-body to of...
Modeling of on-body propagation channels is of paramount importance to those wishing to evaluate rad...
Recent results about body area radio channel dynamics are analyzed, considering on-body and body-to-...
In Wireless Body Area Networks (WBANs), on-body channels undergo temporal variations predominantly b...
Abstract—In wireless body area networks, on-body radio propagation channels are typically time-varyi...
International audienceThis letter studies time correlation functions of mobile-to-mobile (M2M) fadin...
In this work, finite-difference time-domain was used for the investigation of dynamic wireless body ...
In wireless body area networks, on-body radio propagation channels are typically time-varying, becau...
Time selective fading investigations based on 3.5-GHz SISO narrowband envelope data are carried out ...
Modeling of on-body propagation channels is of paramount importance to those wishing to evaluate rad...
To investigate on-body channel space-time correlation characteristics in various walking scenarios, ...
Starting from a real-time dynamic measurement campaign performed at 2.45 GHz, this paper presents th...
This paper analyzes the temporal correlation properties of mobile-to-mobile (M2M) channels, based on...
On-body radio channel modeling and measurement has been studied extensively. However, the spatial co...
This paper analyzes the time correlation properties of vehicle-to-pedestrian (V2P) channels based on...
Comprehensive statistical characterizations of the dynamic narrowband on-body area and on-body to of...
Modeling of on-body propagation channels is of paramount importance to those wishing to evaluate rad...
Recent results about body area radio channel dynamics are analyzed, considering on-body and body-to-...
In Wireless Body Area Networks (WBANs), on-body channels undergo temporal variations predominantly b...
Abstract—In wireless body area networks, on-body radio propagation channels are typically time-varyi...
International audienceThis letter studies time correlation functions of mobile-to-mobile (M2M) fadin...
In this work, finite-difference time-domain was used for the investigation of dynamic wireless body ...
In wireless body area networks, on-body radio propagation channels are typically time-varying, becau...
Time selective fading investigations based on 3.5-GHz SISO narrowband envelope data are carried out ...
Modeling of on-body propagation channels is of paramount importance to those wishing to evaluate rad...