DocumentCode
86873
Title
Call admission control based on adaptive bandwidth allocation for wireless networks
Author
Chowdhury, Mostafa Zaman ; Jang, Yeong Min ; Haas, Zygmunt J.
Author_Institution
Department of Electronics Engineering, Kookmin University, Korea
Volume
15
Issue
1
fYear
2013
fDate
Feb. 2013
Firstpage
15
Lastpage
24
Abstract
Provisioning of quality of service (QoS) is a key issue in any multi-media system. However, in wireless systems, supporting QoS requirements of different traffic types is a more challenging problem due to the need to simultaneously minimize two performance metrics - the probability of dropping a handover call and the probability of blocking a new call. Since QoS requirements are not as stringent for non-real-time traffic, as opposed to real-time traffic, more calls can be accommodated by releasing some bandwidth from the already admitted non-real-time traffic calls. If the released bandwidth that is used to handle handover calls is larger than the released bandwidth that is used for new calls, then the resulting probability of dropping a handover call is smaller than the probability of blocking a new call. In this paper, we propose an efficient call admission control algorithm that relies on adaptive multi-level bandwidth-allocation scheme for non-realtime calls. The scheme allows reduction of the call dropping probability, along with an increase in the bandwidth utilization. The numerical results show that the proposed scheme is capable of attaining negligible handover call dropping probability without sacrificing bandwidth utilization.
Keywords
Bandwidth; Channel allocation; Handover; Quality of service; Real-time systems; Resource management; Adaptive bandwidth allocation; call admission control (CAC); call blocking probability; call dropping probability; handover; multi-class services; multi-class traffic; quality of service (QoS);
fLanguage
English
Journal_Title
Communications and Networks, Journal of
Publisher
ieee
ISSN
1229-2370
Type
jour
DOI
10.1109/JCN.2013.000005
Filename
6476777
Link To Document