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1、RapidMIMO-OFDMSoftwareDefinedRadioSystemPrototypingAmitGupta,AntonioForenza,andRobertW.HeathJr.WirelessNetworkingandCommunicationsGroupDepartmentofElectricalandComputerEngineering,TheUniversityofTexasatAustin1UniversityStationC0803,Austin,TX78712-0240USAPhone:+1-512-232-
2、2014,Fax:+1-512-471-6512{agupta,forenza,rheath}@ece.utexas.eduAbstract—Multipleinput-multipleoutput(MIMO)isanattractivetechnologyforfuturewirelesssystems.MIMOcommunication,enabledbytheuseofmultipletransmitandmultiplereceiveantennas,isknownforitshighspectralefficiencyaswe
3、llasitsrobustnessagainstfadingandinterference.CombiningMIMOwithorthogonalfrequencydivisionmultiplexing(OFDM),itispossibletosignificantlyreducereceivercomplexityasOFDMgreatlysimplifiesequalizationatthereceiver.MIMO-OFDMiscurrentlybeingconsideredforanumberofdevelopingwirel
4、essstandards;consequently,thestudyofMIMO-OFDMinrealisticenvironmentsisofgreatimportance.ThispaperdescribesanapproachforprototypingaMIMO-OFDMsystemusingaflexiblesoftwaredefinedradio(SDR)systemarchitectureinconjunctionwithcommerciallyavailablehardware.Anemphasisonsoftwarep
5、ermitsafocusonalgorithmandsystemdesignissuesratherthanimplementationandhardwareconfiguration.Thepenaltyofthisflexibility,however,isthattheeaseofusecomesattheexpenseofoverallthroughput.Toillustratethebenefitsoftheproposedarchitecture,applicationstoMIMO-OFDMsystemprototypi
6、ngandpreliminaryMIMOchannelmeasurementsarepresented.Adetaileddescriptionofthehardwareisprovidedalongwithdownloadablesoftwaretoreproducethesystem.I.INTRODUCTIONMultiple-inputmultiple-output(MIMO)wirelesssystemsusemultipletransmitandmultiplereceiveantennastoincreasecapacit
7、yandproviderobustnesstofading[1].Toobtainthesebenefitsinbroadbandchannelswithextensivefrequencyselectivity,MIMOcommunicationlinksrequirecomplexspacetimeequalizers.ThecomplexityofMIMOsystemscanbereduced,however,throughorthogonalfrequencydivisionmultiplexing(OFDM).OFDMisan
8、attractivedigitalmodulationtechniquethatpermitsgreatlysimplifiedequalizationatthereceiver.WithOFDM,them