We present a measurement system and method for characterising the 60 GHz time-domain wireless propagation channel using commercially available and cost effective equipment. Our measurements campaign focuses on characterizing shadowing attenuation due to human activity when intercepting the line-of-sight (LOS) path in indoor environments. Such characterization, accompanied by a statistical description of the received power levels, validates our measurement configuration and depicts its potentials for deriving novel research results in the 60 GHz band
We statistically characterize received signal power variations in the time domain caused by human ac...
We statistically characterize received signal power variations in the time domain caused by human ac...
We statistically characterize received signal power variations in the time domain caused by human ac...
We present a measurement system and method for characterising the 60 GHz time-domain wireless propag...
We present a measurement system and method for characterising the 60 GHz time-domain wireless propag...
This paper presents statistical properties of the spatio-temporal propagation channel at 60 GHz. Ext...
International audienceThe 60 GHz frequency band appears to he very promising for wireless multimedia...
International audienceThe 60 GHz frequency band appears to he very promising for wireless multimedia...
International audienceThe 60 GHz frequency band appears to he very promising for wireless multimedia...
International audienceThe 60 GHz frequency band appears to he very promising for wireless multimedia...
International audienceThis paper presents the results obtained from 60 GHz propagation measurement c...
International audienceThis paper presents the results obtained from 60 GHz propagation measurement c...
To be able to connect wirelessly to the internet is nowadays a part of everyday life and the number ...
Abstract: This paper presents measurement results and models for 60 GHz channels. Multipath compo-ne...
In this paper, we present the results of a measurement campaign regarding the short range 60 GHz wir...
We statistically characterize received signal power variations in the time domain caused by human ac...
We statistically characterize received signal power variations in the time domain caused by human ac...
We statistically characterize received signal power variations in the time domain caused by human ac...
We present a measurement system and method for characterising the 60 GHz time-domain wireless propag...
We present a measurement system and method for characterising the 60 GHz time-domain wireless propag...
This paper presents statistical properties of the spatio-temporal propagation channel at 60 GHz. Ext...
International audienceThe 60 GHz frequency band appears to he very promising for wireless multimedia...
International audienceThe 60 GHz frequency band appears to he very promising for wireless multimedia...
International audienceThe 60 GHz frequency band appears to he very promising for wireless multimedia...
International audienceThe 60 GHz frequency band appears to he very promising for wireless multimedia...
International audienceThis paper presents the results obtained from 60 GHz propagation measurement c...
International audienceThis paper presents the results obtained from 60 GHz propagation measurement c...
To be able to connect wirelessly to the internet is nowadays a part of everyday life and the number ...
Abstract: This paper presents measurement results and models for 60 GHz channels. Multipath compo-ne...
In this paper, we present the results of a measurement campaign regarding the short range 60 GHz wir...
We statistically characterize received signal power variations in the time domain caused by human ac...
We statistically characterize received signal power variations in the time domain caused by human ac...
We statistically characterize received signal power variations in the time domain caused by human ac...