The economic impact of millimeter wave wireless networks is a key parameter for the future deployment of novel high capacity network architectures. The future deployment of high density small cells needs a flexible and affordable backhaul. The techno-economic analysis of two different wireless backhaul architectures at millimeter waves, in Point to Multipoint and Point to Point, will be discussed. The EU Commission H2020 TWEETHER “Travelling wave tube based W-band wireless networks with high data rate distribution, spectrum & energy efficiency” project aims to realize the first Point to Multipoint backhaul system at W-band (92-95 GHz) to providing a cost- effective solution for new generation networks. This paper will discuss and demonstrat...
The bands above 100 GHz offer outstanding potentiality for fixed wireless communications, matching t...
The trend for dense deployment in future 5G mobile communication networks makes current wired backha...
The European Commission Horizon 2020 TWEETHER project will conclude the activity on September 2018 w...
Point to multipoint (PmP) distribution at millimeter wave is a frontier so far not yet crossed due t...
The continuously growing traffic demand has motivated the exploration of underutilized millimeter wa...
The exploitation of the millimeter wave spectrum (100 – 300 GHz) for wireless communications needs a...
[EN] The bandwidth demands in mobile communication systems are growing exponentially day by day as t...
Demand for mobile broadband services is continually increasing, requiring operators to provide more...
The demand of capacity in mobile communication is growing exponentially day-by-day, as the numbers ...
—Millimeter waves offer a promising solution to the data congestion that is fast overwhelming the a...
[EN] The bandwidth demands in mobile communication systems are growing exponentially day by day as t...
Spectrum scarcity together with high capacity demands make the use of millimeter wave (mmWave) frequ...
The bandwidth demands in mobile communication systems are growing exponentially day by day as the nu...
The congestion of the spectrum actually devoted to wireless networks has stimulated the exploitation...
With the emergence of next generation broadband wireless access and mobile systems, huge demands are...
The bands above 100 GHz offer outstanding potentiality for fixed wireless communications, matching t...
The trend for dense deployment in future 5G mobile communication networks makes current wired backha...
The European Commission Horizon 2020 TWEETHER project will conclude the activity on September 2018 w...
Point to multipoint (PmP) distribution at millimeter wave is a frontier so far not yet crossed due t...
The continuously growing traffic demand has motivated the exploration of underutilized millimeter wa...
The exploitation of the millimeter wave spectrum (100 – 300 GHz) for wireless communications needs a...
[EN] The bandwidth demands in mobile communication systems are growing exponentially day by day as t...
Demand for mobile broadband services is continually increasing, requiring operators to provide more...
The demand of capacity in mobile communication is growing exponentially day-by-day, as the numbers ...
—Millimeter waves offer a promising solution to the data congestion that is fast overwhelming the a...
[EN] The bandwidth demands in mobile communication systems are growing exponentially day by day as t...
Spectrum scarcity together with high capacity demands make the use of millimeter wave (mmWave) frequ...
The bandwidth demands in mobile communication systems are growing exponentially day by day as the nu...
The congestion of the spectrum actually devoted to wireless networks has stimulated the exploitation...
With the emergence of next generation broadband wireless access and mobile systems, huge demands are...
The bands above 100 GHz offer outstanding potentiality for fixed wireless communications, matching t...
The trend for dense deployment in future 5G mobile communication networks makes current wired backha...
The European Commission Horizon 2020 TWEETHER project will conclude the activity on September 2018 w...