DocumentCode
608089
Title
Wireless Fair Intelligent Admission Control -- WFIAC
Author
Furqan, Fatima ; Hoang, Doan B.
Author_Institution
INEXT Centre for Innovation in IT Services & Applic., Univ. of Technol., Sydney, NSW, Australia
fYear
2013
fDate
25-28 March 2013
Firstpage
1001
Lastpage
1008
Abstract
In next generation wireless networks like WiMAX, a dynamic Call Admission Control (CAC) plays an important role to ensure Quality of Service (QoS) of existing users and to efficiently utilize network resources. We propose a predictive CAC namely Wireless Fair Intelligent Admission Control (WFIAC) that admits or rejects a new incoming connection base on resource availability and load in the network. The proposed CAC works in conjunction to a load control module namely WiMAX Fair Intelligent Congestion Control (WFICC) to determine load in network. The proposed CAC is based on bandwidth borrowing and degradation of over provisioned connections in order to minimize blocking probability and to maximize resource utilization in the network. Once the network load reduces, WFICC upgrades the bandwidth allocated to connections that have data to send. So, WFIAC along with WFICC ensures the network operates around a target operating point to guarantee QoS to end users. A detailed and comprehensive simulation is performed in ns-2 to show the efficiency of the proposed CAC scheme in terms of blocking probability of different service classes and QoS provisioning to existing connections when the network is in congested and non congested state.
Keywords
WiMax; bandwidth allocation; next generation networks; probability; quality of service; telecommunication congestion control; CAC scheme; QoS; WFIAC; WFICC; WiMax fair intelligent congestion control; bandwidth borrowing; blocking probability minimization; dynamic call admission control; load control module; network load reduction; network resource utilization maximization; next generation wireless network; quality of service; wireless fair intelligent admission control; Admission control; Bandwidth; Base stations; Degradation; Delays; WiMAX; Admission Control; Delay; Quality of Service (QoS); Throughput; blocking probability;
fLanguage
English
Publisher
ieee
Conference_Titel
Advanced Information Networking and Applications (AINA), 2013 IEEE 27th International Conference on
Conference_Location
Barcelona
ISSN
1550-445X
Print_ISBN
978-1-4673-5550-6
Electronic_ISBN
1550-445X
Type
conf
DOI
10.1109/AINA.2013.29
Filename
6531862
Link To Document