Title :
Interference avoidance and coordination for small cells in B4G cellular networks
Author :
Hyoungju Ji ; Hyojin Lee ; Seunghoon Choi ; Youngbum Kim ; Younsun Kim ; Papasakellariou, Aris ; Novlan, Thomas
Author_Institution :
DMC R&D Center, Samsung Electron., Co., Ltd., Suwon, South Korea
Abstract :
Base station density in modern cellular networks is continuously increasing in order to cope with the exponential increase in mobile data traffic. Cellular networks which used to rely on macro cells for both system coverage and data transfer are now turning to small cells at an increasing rate. Small cells can complement macro cell dominant cellular networks by providing a cost effective means for offloading mobile data traffic. As in macro cells, communication performance in small cells is determined in large part by the inter-cell interference. Compared to macro cells, inter-cell interference can be much more severe for small cells due to their clustered deployment in urban hotspot areas. This paper discusses how inter-cell interference can be effectively managed in small cells with the use of a diverse range of interference avoidance/coordination techniques.
Keywords :
4G mobile communication; cellular radio; interference suppression; scheduling; telecommunication traffic; B4G cellular networks; base station density; clustered deployment; data transfer; intercell interference; interference avoidance techniques; interference coordination techniques; macro cell dominant cellular networks; macro cells; mobile data traffic; modern cellular networks; small cells; system coverage; urban hotspot areas; Delays; Downlink; Interference; Long Term Evolution; Resource management; Switches; Uplink; B4G; LTE; Small cell; inter-cell interference; interference avoidance; interference coordination;
Conference_Titel :
Globecom Workshops (GC Wkshps), 2013 IEEE
Conference_Location :
Atlanta, GA
DOI :
10.1109/GLOCOMW.2013.6824981