TY - JOUR
T1 - Fairness guaranteed cooperative resource allocation in femtocell networks
AU - Wang, Shuangdie
AU - Wang, Jiang
AU - Xu, Jing
AU - Teng, Yong
AU - Horneman, Kari
PY - 2013/9
Y1 - 2013/9
N2 - User-deployed low-power femtocell access points (FAPs) can provide better indoor coverage and higher data rates than conventional cellular networks. However, a major problem in this uncoordinated frequency reuse scenario is the inter-cell interference. In this paper, we propose a graph based distributed algorithm called fairness guaranteed cooperative resource allocation (FGCRA) to manage interference among femtocells. Since the optimal resource allocation is a NP-hard problem, which is difficult to get global optimization in femtocell networks, our proposed FGCRA algorithm provides sub-optimal resource allocation via cooperation among interfering neighbors. First, we propose a specific fairness factor obtained from two-hop interference relations, to determine the lower bound amount of subchannels that each FAP can use and guarantee the fairness among femtocells. Second, we propose scalable rules for distributed resource allocation and the solution to avoid the conflicts among interfering neighbors. Simulation results show that our proposed FGCRA significantly enhances both average user throughput and cell edge user throughput, and provides better fairness.
AB - User-deployed low-power femtocell access points (FAPs) can provide better indoor coverage and higher data rates than conventional cellular networks. However, a major problem in this uncoordinated frequency reuse scenario is the inter-cell interference. In this paper, we propose a graph based distributed algorithm called fairness guaranteed cooperative resource allocation (FGCRA) to manage interference among femtocells. Since the optimal resource allocation is a NP-hard problem, which is difficult to get global optimization in femtocell networks, our proposed FGCRA algorithm provides sub-optimal resource allocation via cooperation among interfering neighbors. First, we propose a specific fairness factor obtained from two-hop interference relations, to determine the lower bound amount of subchannels that each FAP can use and guarantee the fairness among femtocells. Second, we propose scalable rules for distributed resource allocation and the solution to avoid the conflicts among interfering neighbors. Simulation results show that our proposed FGCRA significantly enhances both average user throughput and cell edge user throughput, and provides better fairness.
KW - Cooperation
KW - Fairness
KW - Femtocell
KW - Inter-cell interference
KW - OFDMA
KW - Resource allocation
UR - https://www.scopus.com/pages/publications/84883248301
U2 - 10.1007/s11277-013-1049-4
DO - 10.1007/s11277-013-1049-4
M3 - 文章
AN - SCOPUS:84883248301
SN - 0929-6212
VL - 72
SP - 957
EP - 973
JO - Wireless Personal Communications
JF - Wireless Personal Communications
IS - 2
ER -