Title :
Combining eICIC with coordinated beamforming in downlink heterogeneous networks
Author :
Aziz, Danish ; Baracca, Paolo
Author_Institution :
Alcatel-Lucent Bell Labs., Stuttgart, Germany
Abstract :
One of the key enablers for 5th Generation (5G) networks is the on-demand overlay of co-channel pico cells on homogeneous macro layer. However, the problem of inter-cell interference (ICI) is very challenging in co-channel heterogeneous deployments. Therefore, we propose a combination of enhanced inter cell interference coordination (eICIC) and coordinated beamforming (CB) as an evolutionary step to approach the 5G performance requirements. We refer to this step as enhanced coordinated beamforming (eCB). With the help of system level performance assessment for large cellular networks, we show that eCB achieves higher spectral efficiency than eICIC. We propose different clustering approaches which can be applied to achieve a given target metric. Moreover, we evaluate the impact of the pico-offset value, the macro resource coordination factor and the number of pico cells on the performance of a heterogeneous deployment.
Keywords :
5G mobile communication; array signal processing; overlay networks; picocellular radio; radiofrequency interference; wireless channels; 5G network; 5th generation network; clustering approach; cochannel heterogeneous deployment; cochannel picocellular network; coordinated beamforming; downlink heterogeneous network; eCB; eICIC; enhanced intercell interference coordination; homogeneous macrolayer system; macroresource coordination factor; on-demand overlay network; system level performance assessment; Array signal processing; Downlink; Gain; Information exchange; Interference; Proposals; Signal to noise ratio;
Conference_Titel :
Personal, Indoor, and Mobile Radio Communication (PIMRC), 2014 IEEE 25th Annual International Symposium on
DOI :
10.1109/PIMRC.2014.7136200