6533b85efe1ef96bd12c09e2
RESEARCH PRODUCT
On the Performance of Channel Assembling and Fragmentation in Cognitive Radio Networks
Lei JiaoVicent PlaFrank Y. LiIndika A. M. Balapuwadugesubject
Channel allocation schemesComputer sciencebusiness.industryApplied MathematicsFragmentation (computing)INGENIERIA TELEMATICATopologyUpper and lower boundsComputer Science ApplicationsContinuous time Markov chain modelingMulti-channel cognitive radio networksChannel assemblingCognitive radioFlow (mathematics)Channel fragmentationPerformance evaluationElectrical and Electronic EngineeringbusinessCommunication channelComputer networkdescription
[EN] Flexible channel allocation may be applied to multi-channel cognitive radio networks (CRNs) through either channel assembling (CA) or channel fragmentation (CF). While CA allows one secondary user (SU) occupy multiple channels when primary users (PUs) are absent, CF provides finer granularity for channel occupancy by allocating a portion of one channel to an SU flow. In this paper, we investigate the impact of CF together with CA for SU flows by proposing a channel access strategy which activates both CF and CA and correspondingly evaluating its performance. In addition, we also consider a novel scenario where CA is enabled for PU flows. The performance evaluation is conducted based on continuous time Markov chain (CTMC) modeling and simulations. Through mathematical analyses and simulation results, we demonstrate that higher system capacity can be achieved indeed by jointly employing both CA and CF, in comparison with the CA-only strategies. However, this benefit is obtained only under certain conditions which are pointed out in this paper. Furthermore, the theoretical capacity upper bound for SU flows with both CF and CA enabled is derived when PU activities are relatively static compared with SU flows.
year | journal | country | edition | language |
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2014-10-01 | IEEE Transactions on Wireless Communications |