This chapter proposes the combination of temporal processing through Rake combining based on direct sequence-spread spectrum (DS-SS), and multiple antenna beamforming or antenna spatial diversity as a possible physical layer access technique for fifth generation (5G) small cell base stations (SBS) operating in the millimetre wave (mmWave) frequencies. Unlike earlier works in the literature aimed at previous generation wireless, the use of the beamforming is presented as operating in the radio frequency (RF) domain, rather than the baseband domain, to minimise power expenditure as a more suitable method for 5G small cells. Some potential limitations associated with massive multiple input-multiple output (MIMO) for small cells are discussed...
With the advent of next-generation mobile devices, wireless networks must be upgraded to fill the ga...
5G innovations have been made in both the network deployment and the transceiver architectures in or...
Future wireless communication networks will be largely characterized by small cell deployments, typi...
This paper investigates low-complexity approaches to small-cell base-station (SBS) design, suitable ...
With densification and heterogeneity being dominant themes for current third, fourth and future fift...
Proceeding of: 12th IEEE/IET International Symposium on Communication Systems, Networks and Digital ...
In the proposed 5G architecture where cell densification is expected to be used for network capacity...
This paper evaluates the impact of multi-5G small cell systems on the energy efficiency (EE) in a Fi...
Millimetre wave (mm-Wave) bands and sub-6 GHz are key technologies in solving the spectrum critical ...
In the next few years, the demands and challenges for the 4G (and its derivatives ie LTE-A) alternat...
Massive multiple input multiple output proposed wireless access method for 5G radio link design to m...
The fifth generation (5G) of wireless communications will integrate all existing technologies while ...
The 3GPP release for 5G (R15) assigns each User Equipment (UE) a radio beam by employing Massive Mul...
The fifth generation (5G) of wireless connectivity is a global research effort for providing a signi...
The evolution from 4G to 5G wireless systems is driven by the expected huge growth in user bit rates...
With the advent of next-generation mobile devices, wireless networks must be upgraded to fill the ga...
5G innovations have been made in both the network deployment and the transceiver architectures in or...
Future wireless communication networks will be largely characterized by small cell deployments, typi...
This paper investigates low-complexity approaches to small-cell base-station (SBS) design, suitable ...
With densification and heterogeneity being dominant themes for current third, fourth and future fift...
Proceeding of: 12th IEEE/IET International Symposium on Communication Systems, Networks and Digital ...
In the proposed 5G architecture where cell densification is expected to be used for network capacity...
This paper evaluates the impact of multi-5G small cell systems on the energy efficiency (EE) in a Fi...
Millimetre wave (mm-Wave) bands and sub-6 GHz are key technologies in solving the spectrum critical ...
In the next few years, the demands and challenges for the 4G (and its derivatives ie LTE-A) alternat...
Massive multiple input multiple output proposed wireless access method for 5G radio link design to m...
The fifth generation (5G) of wireless communications will integrate all existing technologies while ...
The 3GPP release for 5G (R15) assigns each User Equipment (UE) a radio beam by employing Massive Mul...
The fifth generation (5G) of wireless connectivity is a global research effort for providing a signi...
The evolution from 4G to 5G wireless systems is driven by the expected huge growth in user bit rates...
With the advent of next-generation mobile devices, wireless networks must be upgraded to fill the ga...
5G innovations have been made in both the network deployment and the transceiver architectures in or...
Future wireless communication networks will be largely characterized by small cell deployments, typi...