The paper investigates the effect of the body movements on the second order statistics of ultra wideband (UWB) on-body radio channel. A measurement campaign was performed considering four different body-links, namely: waist-to-head, waist-to-chest, waist-to-wrist, and waist-to-ankle, with the subject performing designed movements of different nature, in order to cover a wide range of scenarios. Analysis and comparison of second order channel parameters such as level crossing rate, average fade duration and fade probability for the proposed on-body propagation links is being performed for different environments to highlights their importance for designing an enhanced body-area networks
The paper aims to investigate the optimum locations for ultra wideband (UWB) nodes placement on the ...
In this paper Ultra Wideband (UWB) on-body radio propagation study is performed by characterizing th...
In this paper, subject-specific narrowband (2.45 GHz) and ultra-wideband (3–10.6 GHz) on-body radio...
The paper investigates the effect of the body movements on the second order statistics of ultra wide...
This letter investigates the effect of body movements on the ultrawideband (UWB) on-body radio chann...
The paper presents the improvement offered by spatial diversity to reduce fading in ultra wideband (...
Abstract This paper presents measurements on dynamic off-body radio channels in an ultra wideband f...
Abstract This letter reports the shadowing effects of a human body on dynamic ultrawideband on-body ...
Abstract Dynamic off-body ultra wideband channels are examined by way of anechoic chamber measuremen...
This paper presents experimental investigation of ultra wideband on-body radio channel in both the a...
The paper aims to investigate optimum locations for ultra wideband (UWB) nodes placement on the body...
In this paper the impact of varying human subject postures on the ultra wideband (UWB) off-body radi...
In this paper, the statistical distribution of amplitude of the ultra wideband (UWB) radio channel f...
Given the trend towards a user-centric concept in mobile communications, body area networks have rec...
Ultra Wide-Band (UWB) communications is an emerging technology which can provide numerous advantages...
The paper aims to investigate the optimum locations for ultra wideband (UWB) nodes placement on the ...
In this paper Ultra Wideband (UWB) on-body radio propagation study is performed by characterizing th...
In this paper, subject-specific narrowband (2.45 GHz) and ultra-wideband (3–10.6 GHz) on-body radio...
The paper investigates the effect of the body movements on the second order statistics of ultra wide...
This letter investigates the effect of body movements on the ultrawideband (UWB) on-body radio chann...
The paper presents the improvement offered by spatial diversity to reduce fading in ultra wideband (...
Abstract This paper presents measurements on dynamic off-body radio channels in an ultra wideband f...
Abstract This letter reports the shadowing effects of a human body on dynamic ultrawideband on-body ...
Abstract Dynamic off-body ultra wideband channels are examined by way of anechoic chamber measuremen...
This paper presents experimental investigation of ultra wideband on-body radio channel in both the a...
The paper aims to investigate optimum locations for ultra wideband (UWB) nodes placement on the body...
In this paper the impact of varying human subject postures on the ultra wideband (UWB) off-body radi...
In this paper, the statistical distribution of amplitude of the ultra wideband (UWB) radio channel f...
Given the trend towards a user-centric concept in mobile communications, body area networks have rec...
Ultra Wide-Band (UWB) communications is an emerging technology which can provide numerous advantages...
The paper aims to investigate the optimum locations for ultra wideband (UWB) nodes placement on the ...
In this paper Ultra Wideband (UWB) on-body radio propagation study is performed by characterizing th...
In this paper, subject-specific narrowband (2.45 GHz) and ultra-wideband (3–10.6 GHz) on-body radio...