In this contribution, we focus on the exposure limits and compliance distances of 5G communication systems based on large antenna arrays with high gain and multiplexing capability. In particular, starting from the observation that the antenna array continuously changes its radiation pattern to communicate with a number of user terminals, we develop a simple approach for evaluating a reliable but not overly conservative boundary for the fields radiated by the antenna array. This approach is based on the use of the Normalized Average Power Pattern, and through the paper we show its behavior and demonstrate its usefulness in some cases of interest. Finally, the obtained results are validated by means of an electromagnetic simulation of the ant...
The realistic assessment of the Electromagnetic Field exposure due to wireless telecommunication bas...
A novel technical solution, and paradigm shift, envisioned to achieve the significant spectral effic...
Maximum-Power Extrapolation (MPE) for mobile telecommunication sources follows an established paradi...
The fifth-generation (5G) New Radio (NR) cellular network has been launched recently. The assignment...
The radio frequency (RF) electromagnetic field (EMF) exposure of a 5G small cell radiobase station (...
Maximum power extrapolation techniques from measured data are usually employed to assess the complia...
The traditional approach of radio frequency electromagnetic field exposure compliance assessment is ...
Massive MIMO is a core technology for 5G cellular networks, that matured from a concept to commercia...
This paper describes the assessment of radiofrequency (RF) electromagnetic field (EMF) exposure from...
As the roll-out of the fifth generation (5G) of mobile telecommunications is well underway, standard...
The next generation of mobile networks (5G) is expected to achieve high data rates, reduce latency, ...
This paper aims to estimate the exposure in 5G massiveMIMO networks using a stochastic geometric app...
Chapter Contents:21.1 Motivation for 5G RF-exposure new metrology and guidelines21.2 Measuring 5G RF...
This paper describes an investigation on the application of the Maximum Power Extrapolation (MPE) te...
5G base stations usually use different beams to transmit broadcast and user data. Moreover the broad...
The realistic assessment of the Electromagnetic Field exposure due to wireless telecommunication bas...
A novel technical solution, and paradigm shift, envisioned to achieve the significant spectral effic...
Maximum-Power Extrapolation (MPE) for mobile telecommunication sources follows an established paradi...
The fifth-generation (5G) New Radio (NR) cellular network has been launched recently. The assignment...
The radio frequency (RF) electromagnetic field (EMF) exposure of a 5G small cell radiobase station (...
Maximum power extrapolation techniques from measured data are usually employed to assess the complia...
The traditional approach of radio frequency electromagnetic field exposure compliance assessment is ...
Massive MIMO is a core technology for 5G cellular networks, that matured from a concept to commercia...
This paper describes the assessment of radiofrequency (RF) electromagnetic field (EMF) exposure from...
As the roll-out of the fifth generation (5G) of mobile telecommunications is well underway, standard...
The next generation of mobile networks (5G) is expected to achieve high data rates, reduce latency, ...
This paper aims to estimate the exposure in 5G massiveMIMO networks using a stochastic geometric app...
Chapter Contents:21.1 Motivation for 5G RF-exposure new metrology and guidelines21.2 Measuring 5G RF...
This paper describes an investigation on the application of the Maximum Power Extrapolation (MPE) te...
5G base stations usually use different beams to transmit broadcast and user data. Moreover the broad...
The realistic assessment of the Electromagnetic Field exposure due to wireless telecommunication bas...
A novel technical solution, and paradigm shift, envisioned to achieve the significant spectral effic...
Maximum-Power Extrapolation (MPE) for mobile telecommunication sources follows an established paradi...