DocumentCode
120272
Title
Access control for hybrid femtocell network based on AGV mechanism
Author
Chengmei Li ; Hexiang Duan ; Hongbo Ba ; Xiaoning Zhang ; Jianjun Wu
Author_Institution
Instn. of Adv. Commun., Peking Univ., Beijing, China
fYear
2014
fDate
16-19 Feb. 2014
Firstpage
1055
Lastpage
1058
Abstract
As most of voice calls and data traffic originates indoors, femtocells have been one of the most promising trends in LTE, which are short-range, cost-beneficial and low-power cellular home base stations that can improve indoor coverage and voice/data quality of service (QoS). One of the major challenges for femtocell network is the access control. The hybrid access control mechanism, as a tradeoff between open and closed scenario, is the most promising access mechanism from which both users and operators benefit. Femtocell user equipments (FUEs) select femtocell access points (FAPs) according to their reported channel information which FAPs confidently own, and selfish FAPs have incentive to report larger information to win greater opportunity to be selected. Considering the aforementioned truth-telling in access control issue, this paper proposes access control scheme for hybrid femtocell network based on Arrow-d´Aspremont-Gerard-Varet (AGV) mechanism. Close form for the payment is given. Moreover, the access control scheme is nearly optimal performances with low computational complexity compared with the optimal access scheme. Furthermore, the simulation results demonstrate that the access control scheme can be apply to hybrid femtocell network.
Keywords
femtocellular radio; quality of service; telecommunication control; telecommunication traffic; AGV mechanism; Arrow-d´Aspremont-Gerard-Varet mechanism; access mechanism; channel information; computational complexity; data traffic; femtocell access points; femtocell user equipments; hybrid access control mechanism; hybrid femtocell network; indoor coverage; low-power cellular home base stations; optimal access scheme; voice calls; voice/data quality of service; Access control; Channel capacity; Educational institutions; Femtocell networks; Resource management; Simulation; Throughput; AGV; Femtocell; access control; hybrid; truth-telling;
fLanguage
English
Publisher
ieee
Conference_Titel
Advanced Communication Technology (ICACT), 2014 16th International Conference on
Conference_Location
Pyeongchang
Print_ISBN
978-89-968650-2-5
Type
conf
DOI
10.1109/ICACT.2014.6779120
Filename
6779120
Link To Document