In this letter, an investigation of the very high frequency-ultrahigh frequency (VHF-UHF) wireless broadband indoor channel is carried out. In particular, a wireless channel measurement campaign in an indoor environment has been made, in order to characterize the path loss in a broad set of frequencies. The wireless channel is sounded by using a set of discone wideband antennas and a vector network analyzer set to sweep the transmitted signal in the considered band. The measurement results lead to the derivation of a well specified indoor path loss exponent statistical model that takes into account the frequency dependence as well as the distance between the antennas. Three different statistical model refinements are presented, and each of ...
In this paper we present measurement results for indoor wideband radio channels at 5 and 60 GHz. To ...
The current propagation models used for frequency bands less than 6 GHz are not appropriate and cann...
Studying the radio wave propagation within indoor environment is necessary previously to deploy wire...
Abstract. A power-law path-loss model for indoor communications at 1.8 GHz is examined. In it, the e...
Fifth generation wireless communications will exploit the enormous chunk of bandwidth available at m...
The current propagation models used for frequency bands less than 6 GHz are not appropriate and cann...
International audienceA simplified setup using an HP network analyzer to perform path loss measureme...
The critical rule to achieve extremely high peaks of data transmission is the availability of a trem...
International audienceA simplified setup using an HP network analyzer to perform path loss measureme...
International audienceA simplified setup using an HP network analyzer to perform path loss measureme...
International audienceA simplified setup using an HP network analyzer to perform path loss measureme...
In this study, path-loss and shadowing measurement results for three different industrial indoor env...
This paper presents an experimental characterisation of off-body radio channels using ultra wideband...
This paper presents an experimental characterisation of off-body radio channels using ultra wideband...
Indoor use of wireless systems poses one of the biggest design challenges. It is difficult to predic...
In this paper we present measurement results for indoor wideband radio channels at 5 and 60 GHz. To ...
The current propagation models used for frequency bands less than 6 GHz are not appropriate and cann...
Studying the radio wave propagation within indoor environment is necessary previously to deploy wire...
Abstract. A power-law path-loss model for indoor communications at 1.8 GHz is examined. In it, the e...
Fifth generation wireless communications will exploit the enormous chunk of bandwidth available at m...
The current propagation models used for frequency bands less than 6 GHz are not appropriate and cann...
International audienceA simplified setup using an HP network analyzer to perform path loss measureme...
The critical rule to achieve extremely high peaks of data transmission is the availability of a trem...
International audienceA simplified setup using an HP network analyzer to perform path loss measureme...
International audienceA simplified setup using an HP network analyzer to perform path loss measureme...
International audienceA simplified setup using an HP network analyzer to perform path loss measureme...
In this study, path-loss and shadowing measurement results for three different industrial indoor env...
This paper presents an experimental characterisation of off-body radio channels using ultra wideband...
This paper presents an experimental characterisation of off-body radio channels using ultra wideband...
Indoor use of wireless systems poses one of the biggest design challenges. It is difficult to predic...
In this paper we present measurement results for indoor wideband radio channels at 5 and 60 GHz. To ...
The current propagation models used for frequency bands less than 6 GHz are not appropriate and cann...
Studying the radio wave propagation within indoor environment is necessary previously to deploy wire...