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Online Spectrum Allocation for Cognitive Cellular Network Supporting Scalable Demands Jianfei Wang 2011-5-23.

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Presentation on theme: "Online Spectrum Allocation for Cognitive Cellular Network Supporting Scalable Demands Jianfei Wang 2011-5-23."— Presentation transcript:

1 Online Spectrum Allocation for Cognitive Cellular Network Supporting Scalable Demands Jianfei Wang 2011-5-23

2 Outline Introduction Algorithm Target Algorithm Detail Evaluation

3 Introduction Online Spectrum Allocation Scalable Demands – H.264 Satisfaction Degree

4 Algorithm Target Zero User Wait Time High Spectrum Utility Rate

5 Spectrum Model Complete graph Coordinate Network

6 System Assumption Queue System – Arrival of users’ request Possion process – Customer’s service time Exponential distribution – Queuing rules FCFS – Capacity of the system

7 State Machine of System

8 Stabilization of Normal State M/M/N 0 /N 0

9 State Boundary Boundary between Normal and Poor Boundary between Rich and Normal Frequency Ratio of Normal State – Frequency Utility Ratio vs Block Probability.

10 Estimation of Arrival Rate ARMA

11 Estimation of Departure Rate Data Source – The Customers who recently depart – The customers who are active

12 Evaluation Evaluate Parameters – f 2 =0.8 12345678 f10.5641530.4832210.40660.3774570.3223730.3152710.4745430.594657 f30.95 910111213141516 f10.6339760.6681630.680190.6845470.6861110.6953970.6966610.698121 f30.950.9441430.9222920.912730.9148150.9066570.9064980.908398 1718192021222324 f10.6949960.6861590.6848640.6806940.6776290.6580580.6528590.626415 f30.9088410.91810.9202850.9229750.9286020.9359050.95

13 Evaluation Result Active Consumers vs SatisfactionSystem Free Spectrum Statistics

14 Reference [1]G.E.P.BoxandG.M.Jenkins. Timeseriesanalysis:forecastingand control.PrenticeHallPTRUpperSaddleRiver,NJ,USA,1994. [2]M.BuddhikotandK.Ryan.Spectrummanagementincoordinated dynamicspectrumaccessbasedcellularnetworks.In Proc.ofIEEE DySPAN,pages299–307,2005. [3]L.Cao,L.Yang,X.Zhou,Z.Zhang,andH.Zheng.Optimus:SINR- DrivenSpectrumDistributionviaConstraintTransformation.In New FrontiersinDynamicSpectrum,2010IEEESymposiumon,pages1–12. IEEE,2010. [4]X.Cheng,C.Dale,andJ.Liu.Statisticsandsocialnetworkofyoutube videos.In QualityofService,2008.IWQoS2008.16thInternational workshopon,pages229–238.IEEE,2008. [5]L.Kleinrock.Queueingsystems,volume1:theory,1975. [6]A.Lakhina,K.Papagiannaki,M.Crovella,C.Diot,E.D.Kolaczyk,and N.Taft.Structuralanalysisofnetworktrafficflows. ACMSIGMETRICS Performanceevaluationreview,32(1):61–72,2004. [7]MichaelLenczner,BenoitGrgoire,andFran?oisProulx.CRAWDAD tracesetilesansfil/wifidog/session(v.2007-08- 27).Downloadedfrom http://crawdad.cs.dartmouth.edu/ilesansfil/wifidog/session,August2007. [8]J.Sachs,I.Maric,andA.Goldsmith.CognitiveCellularSystemswithin theTVSpectrum.In NewFrontiersinDynamicSpectrum,2010IEEE Symposiumon,pages1–12.IEEE,2010. [9]T.Schierl,T.Stockhammer,andT.Wiegand.Mobilevideotransmission usingscalablevideocoding. IEEETransactionsonCircuitsandSystems forVideoTechnology,17(9):1204–1217,2007. [10]J.Sjoberg,M.Westerlund,andA.Lakaniemi.Q.Xie,”RTPPayload FormatandFileStorageFormatfortheAdaptiveMulti- Rate(AMR)and AdaptiveMulti-RateWideband(AMR-WB)AudioCodecs.Technical report,RFC4867,April2007. [11]S.Sodagari,A.Attar,andS.G.Bilen.StrategiestoAchieveTruthful SpectrumAuctionsforCognitiveRadioNetworksBasedonMechanism Design.In NewFrontiersinDynamicSpectrum,2010IEEESymposium on,pages1–6.IEEE,2010.


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