In this work, finite-difference time-domain was used for the investigation of dynamic wireless body area network channel characteristics during walking, thus accounting for dynamic aspects and body postures. This involves the study of on-body, off-body, and body-to-body communication in an empty environment, at the center frequency of 2.45 GHz. The channels were investigated in terms of fade variation and their corresponding amplitude distributions. For on-body channels, the fade variation was found to be periodic, with larger fade variations for the channels involving the nodes at the hand and thigh. For off-body and body-to-body channels, channels with the absence of line of sight experienced constructive and destructive interference as t...
This paper presents the first characterization and modeling of dynamic propagation channels for huma...
This paper presents an analysis of subject-specific radio channels in wireless body area networks (W...
none4siThis paper presents a novel approach for modelling the influence of body dynamics on the radi...
In this work, finite-difference time-domain was used for the investigation of dynamic wireless body ...
In this work finite-difference time-domain (FDTD) was used for the investigation of dynamic wireless...
The advancements in technology have made it possible to create a network of implant and wearable nod...
This article is designet as ”Open Access”. This is the journal's PDF originally published in EURASIP...
In this work, the off-body area network channel characteristics during walking were investigated usi...
In this work, the off-body area network channel characteristics during walking were investigated usi...
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...
Recent results about body area radio channel dynamics are analyzed, considering on-body and body-to-...
In wireless body area networks, on-body radio propagation channels are typically time-varying, becau...
The need to find reliable and simultaneously simplistic propagation models in the majority of freque...
This paper presents the experimental investigation of on-body channel fading at 2.45 GHz considering...
This paper presents the first characterization and modeling of dynamic propagation channels for huma...
This paper presents an analysis of subject-specific radio channels in wireless body area networks (W...
none4siThis paper presents a novel approach for modelling the influence of body dynamics on the radi...
In this work, finite-difference time-domain was used for the investigation of dynamic wireless body ...
In this work finite-difference time-domain (FDTD) was used for the investigation of dynamic wireless...
The advancements in technology have made it possible to create a network of implant and wearable nod...
This article is designet as ”Open Access”. This is the journal's PDF originally published in EURASIP...
In this work, the off-body area network channel characteristics during walking were investigated usi...
In this work, the off-body area network channel characteristics during walking were investigated usi...
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...
Recent results about body area radio channel dynamics are analyzed, considering on-body and body-to-...
In wireless body area networks, on-body radio propagation channels are typically time-varying, becau...
The need to find reliable and simultaneously simplistic propagation models in the majority of freque...
This paper presents the experimental investigation of on-body channel fading at 2.45 GHz considering...
This paper presents the first characterization and modeling of dynamic propagation channels for huma...
This paper presents an analysis of subject-specific radio channels in wireless body area networks (W...
none4siThis paper presents a novel approach for modelling the influence of body dynamics on the radi...