DocumentCode
1759691
Title
Contention Based Multichannel MAC Protocol for Distributed Cognitive Radio Networks
Author
Debroy, Saptarshi ; De, Suvranu ; Chatterjee, Mainak
Author_Institution
Dept. of EECS, Univ. of Central Florida, Orlando, FL, USA
Volume
13
Issue
12
fYear
2014
fDate
Dec. 1 2014
Firstpage
2749
Lastpage
2762
Abstract
Design of an efficient medium access control protocol is critical for proper functioning of a distributed cognitive radio network and better utilization of the channels not being used by primary users. In this paper, we design a contention based distributed medium access control (MAC) protocol for the secondary users´ channel access. The proposed MAC protocol allows collision-free access to the available data channels and eventually their utilization by secondary users, with spectrum sensing part being handled by exclusive sensing nodes. We further introduce the provision of reservation of free channels by secondaries for extended periods to increase utilization without causing harmful interference to primaries. We demonstrate how such extended access to resources can be tuned to provide differential quality of service to the secondary users. The effectiveness of the protocol is evaluated by performing analysis and simulation. We use blocking probability, secondary usage of a secondary user and performance degradation caused to primary incumbents as performance metrics. We obtain the conditions for such extended access and try to gauge the resulting increase in utilization. Under optimal conditions, the proposed scheme enables the secondary network to utilize all available channels. The proposed scheme is shown to outperform the most sophisticated existing MAC schemes for distributed secondary networks.
Keywords
access protocols; cognitive radio; probability; quality of service; wireless channels; blocking probability; collision free access; contention based multichannel MAC protocol; data channels; differential quality of service; distributed cognitive radio networks; distributed medium access control; distributed secondary networks; medium access control protocol; secondary usage; secondary user channel access; Cognitive radio; Data communication; Interference; Media Access Protocol; Quality of service; Sensors; Cognitive radio networks; MAC protocol; secondary users;
fLanguage
English
Journal_Title
Mobile Computing, IEEE Transactions on
Publisher
ieee
ISSN
1536-1233
Type
jour
DOI
10.1109/TMC.2014.2352260
Filename
6915732
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