DocumentCode :
148770
Title :
Centralized dynamic resource allocation scheme for femtocells exploiting graph theory approach
Author :
Mach, P. ; Becvar, Zdenek
Author_Institution :
Dept. of Telecommun. Eng., Czech Tech. Univ. in Prague, Prague, Czech Republic
fYear :
2014
fDate :
6-9 April 2014
Firstpage :
1479
Lastpage :
1484
Abstract :
This paper focuses on mitigation of cross-tier and co-tier interference for dense deployment of the femtocells (FAPs). We propose a centralized dynamic radio resource allocation scheme exploiting graph theory approach. The FAPs either utilize an overlapping allocation mode (OAM) or a non-overlapping allocation mode (NAM). The allocation mode is dynamically selected by a control unit (CU) depending on the changing interference pattern among individual FAPs. The FAPs are assumed to be mutually interfered if interference is higher than a specified threshold. In order to create interference matrix among the FAPs, we use Bron-Kerbosch algorithm. In case the FAPs are assessed to be interfered, the CU also allocates resources in the NAM mode in dynamic nature in dependence on current traffic load of the FAPs. The results indicate that the proposal offers significantly higher throughput for the macro users than other competitive schemes. Simultaneously, femto users perform satisfactorily as well.
Keywords :
femtocellular radio; graph theory; interference suppression; Bron-Kerbosch algorithm; CU; FAP; NAM; NAM mode; OAM; centralized dynamic radio resource allocation scheme; changing interference pattern; co-tier interference mitigation; control unit; cross-tier interference mitigation; current traffic load; femto access points; femto users; femtocell dense deployment; graph theory approach; interference matrix; macro users; mutual interference; nonoverlapping allocation mode; overlapping allocation mode; Bandwidth; Heuristic algorithms; Interference; Optimized production technology; Proposals; Resource management; Throughput; dynamic radio resource allocation; femtocell; graph theory; interference mitigation;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Wireless Communications and Networking Conference (WCNC), 2014 IEEE
Conference_Location :
Istanbul
Type :
conf
DOI :
10.1109/WCNC.2014.6952408
Filename :
6952408
Link To Document :
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