The trend for dense deployment in future 5G mobile communication networks makes current wired backhaul infeasible owing to the high cost. Millimetre-wave (mm-wave) communication, a promising technique with the capability of providing a multi-gigabit transmission rate, offers a flexible and cost-effective candidate for 5G backhauling. By exploiting highly directional antennas, it becomes practical to cope with explosive traffic demands and to deal with interference problems. Several advancements in physical layer technology, such as hybrid beamforming and full duplexing, bring new challenges and opportunities for mm-wave backhaul. This article introduces a design framework for 5G mm-wave backhaul, including routing, spatial reuse scheduling ...
Small cell backhaul solutions need to be cost-effective, scalable, and easy to install. This paper p...
Millimeter wave (mm-Wave) frequencies between 6 and 100 GHz provide orders of magnitude larger spect...
Five-G heterogeneous network overlaid by millimeter-wave (mmWave) access employs mmWave meshed backh...
The trend for dense deployment in future 5G mobile communication networks makes current wired backha...
The trend for dense deployment in future 5G mobile communication networks makes current wired backha...
The paper aims to provide a high-level view of 5G fronthaul and backhaul wireless transport over mil...
This paper presents the approach of extending cellular networks with millimeter-wave backhaul and ac...
This paper presents the approach of extending cellular networks with millimeter-wave backhaul and ac...
This paper presents the approach of extending cellular networks with millimeter-wave backhaul and ac...
This paper presents the approach of extending cellular networks with millimeter-wave backhaul and ac...
This paper presents the approach of extending cellular networks with millimeter-wave backhaul and ac...
This paper presents the approach of extending cellular networks with millimeter-wave backhaul and ac...
Future 5G mobile networks will require increased backhaul (BH) capacity to connect a massive amount ...
Future 5G mobile networks will require increased backhaul (BH) capacity to connect a massive amount ...
Millimeter-wave frequencies between 6 and 100 GHz provide orders of magnitude larger spectrum than c...
Small cell backhaul solutions need to be cost-effective, scalable, and easy to install. This paper p...
Millimeter wave (mm-Wave) frequencies between 6 and 100 GHz provide orders of magnitude larger spect...
Five-G heterogeneous network overlaid by millimeter-wave (mmWave) access employs mmWave meshed backh...
The trend for dense deployment in future 5G mobile communication networks makes current wired backha...
The trend for dense deployment in future 5G mobile communication networks makes current wired backha...
The paper aims to provide a high-level view of 5G fronthaul and backhaul wireless transport over mil...
This paper presents the approach of extending cellular networks with millimeter-wave backhaul and ac...
This paper presents the approach of extending cellular networks with millimeter-wave backhaul and ac...
This paper presents the approach of extending cellular networks with millimeter-wave backhaul and ac...
This paper presents the approach of extending cellular networks with millimeter-wave backhaul and ac...
This paper presents the approach of extending cellular networks with millimeter-wave backhaul and ac...
This paper presents the approach of extending cellular networks with millimeter-wave backhaul and ac...
Future 5G mobile networks will require increased backhaul (BH) capacity to connect a massive amount ...
Future 5G mobile networks will require increased backhaul (BH) capacity to connect a massive amount ...
Millimeter-wave frequencies between 6 and 100 GHz provide orders of magnitude larger spectrum than c...
Small cell backhaul solutions need to be cost-effective, scalable, and easy to install. This paper p...
Millimeter wave (mm-Wave) frequencies between 6 and 100 GHz provide orders of magnitude larger spect...
Five-G heterogeneous network overlaid by millimeter-wave (mmWave) access employs mmWave meshed backh...