Objective: Evaluate and investigate the effect of phase noise in different waveform(s) for mm-wave radio access technologies. Background: Mobile communication systems operating in higher frequencies than those currently allocated to 4G networks are being considered by industry as a very promising approach to significantly boost capacity. Such a system can potentially utilize the much larger spectrum available in high frequencies. Moreover, in order to support user data rates of Gbps and above, contiguous bandwidths larger than 100 MHz (being the widest bandwidth currently defined for 4G) are required. Depending on the realization of the 5G system, bandwidths in the order of several GHz may be needed for efficient high capacity data deliver...
ABSTRACT: The evolution of mobile telecommunication networks, from the 2G-GSM system to the 4G-LTE-A...
En el presente trabajo se propone una arquitectura de red para el transporte de ondas milimétricas (...
A major challenge in future mobile networks is to overcome the capacity barrier in wireless communic...
Mestrado em Engenharia Eletrónica e TelecomunicaçõesWireless communications are continuously evolvin...
Frequencies above 6 GHz are being considered by mobile communication industry for the deployment of ...
Fifth-generation mobile networks (5G) are the solution for the demanding mobile traffic requirements...
Segons la cota de Shannon, arriba un moment en el que no és viable augmentar la capacitat d'un canal...
This paper provides a high level comparison of several multi-carrier and single-carrier waveforms ba...
This paper provides a high level comparison of several multi-carrier and single- carrier waveforms b...
Historically, in order to fulfil all the requirements for the new generations, the frequency bands h...
Fifth-generation (5G) mobile networks consist of a range of novel technologies to fulfill different ...
The millimeter-wave frequency band (30–300 GHz) is considered a potential candidate to host very hig...
The new radio (NR) air interface specified for 5G systems is able to operate in frequency bands in t...
This project presents an analysis of the state of the art of mobile communications. A brief introduc...
In this paper, we evaluate the waveform candidates for 5G wireless communications such as FBMC and U...
ABSTRACT: The evolution of mobile telecommunication networks, from the 2G-GSM system to the 4G-LTE-A...
En el presente trabajo se propone una arquitectura de red para el transporte de ondas milimétricas (...
A major challenge in future mobile networks is to overcome the capacity barrier in wireless communic...
Mestrado em Engenharia Eletrónica e TelecomunicaçõesWireless communications are continuously evolvin...
Frequencies above 6 GHz are being considered by mobile communication industry for the deployment of ...
Fifth-generation mobile networks (5G) are the solution for the demanding mobile traffic requirements...
Segons la cota de Shannon, arriba un moment en el que no és viable augmentar la capacitat d'un canal...
This paper provides a high level comparison of several multi-carrier and single-carrier waveforms ba...
This paper provides a high level comparison of several multi-carrier and single- carrier waveforms b...
Historically, in order to fulfil all the requirements for the new generations, the frequency bands h...
Fifth-generation (5G) mobile networks consist of a range of novel technologies to fulfill different ...
The millimeter-wave frequency band (30–300 GHz) is considered a potential candidate to host very hig...
The new radio (NR) air interface specified for 5G systems is able to operate in frequency bands in t...
This project presents an analysis of the state of the art of mobile communications. A brief introduc...
In this paper, we evaluate the waveform candidates for 5G wireless communications such as FBMC and U...
ABSTRACT: The evolution of mobile telecommunication networks, from the 2G-GSM system to the 4G-LTE-A...
En el presente trabajo se propone una arquitectura de red para el transporte de ondas milimétricas (...
A major challenge in future mobile networks is to overcome the capacity barrier in wireless communic...