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車(chē)載網(wǎng)絡(luò)CAN數(shù)據(jù)連路層基本概念MessagesInformationRoutingBitratePrioritiesRemoteDataRequestMultimasterArbitrationSafetyErrorSignallingandRecoveryTimeFaultConfinementConnectionsSingleChannelBusvaluesAcknowledgmentSleepMode/Wake-upOscillatorToleranceMessagesInformationonthebusissentinfixedformatmessagesofdifferentbutlimitedlengthWhenthebusisfreeanyconnectedunitmaystarttotransmitanewmessage.InformationRoutingInCANsystemsaCANnodedoesnotmakeuseofanyinformationaboutthesystemconfiguration(e.g.stationaddresses).Thishasseveralimportantconsequences:(1)SystemFlexibility:NodescanbeaddedtotheCANnetworkwithoutrequiringanychangeinthesoftwareorhardwareofanynodeandapplicationlayer.
InformationRouting(2)MessageRouting:ThecontentofamessageisnamedbyanIDENTIFIER.TheIDENTIFIERdoesnotindicatethedestinationofthemessage,butdescribesthemeaningofthedata,sothatallnodesinthenetworkareabletodecidebyMessageFilteringwhetherthedataistobeacteduponbythemornot.InformationRouting (3)Multicast:AsaconsequenceoftheconceptofMessageFilteringanynumberofnodescanreceiveandsimultaneouslyactuponthesamemessage.InformationRouting (4)DataConsistency:WithinaCANnetworkitisguaranteedthatamessageissimultaneouslyacceptedeitherbyallnodesorbynonode.Thusdataconsistencyofasystemisachievedbytheconceptsofmulticastandbyerrorhandling.BitrateThespeedofCANmaybedifferentindifferentsystems.However,inagivensystemthebit-rateisuniformandfixed.PrioritiesTheIDENTIFIERdefinesastaticmessagepriorityduringbusaccess.RemoteDataRequestBysendingaREMOTEFRAMEanoderequiringdatamayrequestanothernodetosendthecorrespondingDATAFRAME.
TheDATAFRAMEandthecorrespondingREMOTEFRAMEarenamedbythesameIDENTIFIER.MultimasterWhenthebusisfreeanyunitmaystarttotransmitamessage.Theunitwiththemessageofhigherprioritytobetransmittedgainsbusaccess.ArbitrationWheneverthebusisfree,anyunitmaystarttotransmitamessage.If2ormoreunitsstarttransmittingmessagesatthesametime,thebusaccessconflictisresolvedbybitwisearbitrationusingtheIDENTIFIER.ArbitrationThemechanismofarbitrationguaranteesthatneitherinformationnortimeislost.IfaDATAFRAMEandaREMOTEFRAMEwiththesameIDENTIFIERareinitiatedatthesametime,theDATAFRAMEprevailsovertheREMOTEFRAME.ArbitrationDuringarbitrationeverytransmittercomparesthelevelofthebittransmittedwiththelevelthatismonitoredonthebus.Iftheselevelsareequaltheunitmaycontinuetosend.Whena’recessive’levelissentanda’dominant’levelismonitored(seeBusValues),theunithaslostarbitrationandmustwithdrawwithoutsendingonemorebit.SafetyInordertoachievetheutmostsafetyofdatatransfer,powerfulmeasuresforerrordetection,signalingandself-checkingareimplementedineveryCANnode.SafetyErrorDetection:Fordetectingerrorsthefollowingmeasureshavebeentaken:(1)Monitoring(transmitterscomparethebitlevelstobetransmittedwiththebitlevelsdetectedonthebus) (2)CyclicRedundancyCheck (3)BitStuffingSafetyTheerrordetectionmechanismshavethefollowingproperties:
(1)upto5randomlydistributederrorsinamessagearedetected.(2)bursterrorsoflengthlessthan15inamessagearedetected.Safety (3)errorsofanyoddnumberinamessagearedetected. (4)Totalresidualerrorprobabilityforundetectedcorruptedmessages:lessthanmessageerrorrate*4.7*10-11.ErrorSignalingand
RecoveryTimeCorruptedmessagesareflaggedbyanynodedetectinganerror.Suchmessagesareabortedandwillberetransmittedautomatically.ErrorSignallingand
RecoveryTimeTherecoverytimefromdetectinganerroruntilthestartofthenextmessageisatmost31bittimes,ifthereisnofurthererror.FaultConfinementCANnodesareabletodistinguishshortdisturbancesfrompermanentfailures.Defectivenodesareswitchedoff.ConnectionsTheCANserialcommunicationlinkisabustowhichanumberofunitsmaybeconnected.Thisnumberhasnotheoreticallimit.Practicallythetotalnumberofunitswillbelimitedbydelaytimesand/orelectricalloadsonthebusline.SingleChannelThebusconsistsofasinglechannelthatcarriesbits.Fromthisdataresynchronizationinformationcanbederived.SingleChannelThewayinwhichthischannelisimplementedisnotfixedinthisspecification.E.g.singlewire(plusground),twodifferentialwires,opticalfibres,etc.BusvaluesThebuscanhaveoneoftwocomplementarylogicalvalues:’dominant’or’recessive’.Duringsimultaneoustransmissionof’dominant’and’recessive’bits,theresultingbusvaluewillbe’dominant’.
BusvaluesForexample,incaseofawired-ANDimplementationofthebus,the’dominant’levelwouldberepresentedbyalogical’0’andthe’recessive’levelbyalogical’1’.Physicalstates(e.g.electricalvoltage,light)thatrepresentthelogicallevelsarenotgiveninthisspecification.AcknowledgmentAllreceiverschecktheconsistencyofthemessagebeingreceivedandwillacknowledgeaconsistentmessageandflaganinconsistentmessage.SleepMode/Wake-upToreducethesystem’spowerconsumption,aCAN-devicemaybesetintosleepmodewithoutanyinternalactivityandwithdisconnectedbusdrivers.Thesleepmodeisfinishedwithawake-upbyanybusactivityorbyinternalconditionsofthesystem.SleepMode/Wake-upOnwake-up,theinternalactivityisrestarted,althoughtheMACsublayerwillbewaitingforthesystem’soscillatortostabilizeanditwillthenwaituntilithassynchronizeditselftothebusactivity(bycheckingforelevenconsecutiverecessivebits),beforethebusdriversaresetto"on-bus"again.OscillatorToleranceTheBitTimingrequirementsallowceramicresonatorstobeusedinapplicationswithtransmissionratesofupto125kbit/sasaruleofthumb;ForthefullbusspeedrangeoftheCANprotocol,aquartzoscillatorisrequired.MESSAGETRANSFERMessage一詞在CAN通訊中有特殊的內(nèi)涵:首先它是一個(gè)位流序列有限的長(zhǎng)度并且有固定的格式;FrameFormatsTherearetwodifferentformatswhichdifferinthelengthoftheIDENTIFIERfield:StandardFrames--Frameswiththenumberof11bitIDENTIFIERExtendedFrames--framescontaining29bitIDENTIFIERFrameTypesfourdifferentframetypesDATAFRAMEREMOTEFRAMEERRORFRAMEOVERLOADFRAME示波器采集的
CAN總線(xiàn)數(shù)據(jù)幀DATAFRAMESTARTOFFRAMEARBITRATIONFIELDARBITRATIONFIELD
---------StandardFormatARBITRATIONFIELD
---------ExtendedFormatExtendedFormatStandardFormatARBITRATIONFIELD
---------ExtendedFormatCONTROLFIELD(StandardFormat
aswellasExtendedFormat)DATALENGTHCODE(StandardFormataswellasExtendedFormat)DATAFIELDCRCFIELD
將要發(fā)送的數(shù)據(jù)比特序列當(dāng)作一個(gè)多項(xiàng)式f(x)的系數(shù),在發(fā)送方用收發(fā)雙方預(yù)先約定的生成多項(xiàng)式G(x)去除,求得一個(gè)余數(shù)多項(xiàng)式。
將余數(shù)多項(xiàng)式加到數(shù)據(jù)多項(xiàng)式之后發(fā)送到接收端。CRC校驗(yàn)基本工作原理
接收端用同樣的生成多項(xiàng)式G(x)去除接收數(shù)據(jù)多項(xiàng)式f’(x),得到計(jì)算余數(shù)多項(xiàng)式。
如果計(jì)算余數(shù)多項(xiàng)式與接收余數(shù)多項(xiàng)式相同,則表示傳輸無(wú)差錯(cuò);如果計(jì)算余數(shù)多項(xiàng)式不等于接收余數(shù)多項(xiàng)式,則表示傳輸有差錯(cuò),由發(fā)送方重發(fā)數(shù)據(jù),直至正確為止。CRC校驗(yàn)基本工作原理CRC生成多項(xiàng)式G(x)由協(xié)議規(guī)定,生成多項(xiàng)式的結(jié)構(gòu)和檢錯(cuò)效果要經(jīng)過(guò)嚴(yán)格的數(shù)學(xué)分析和試驗(yàn)后確定。CRC校驗(yàn)基本工作原理發(fā)送方接收方發(fā)送數(shù)據(jù)f(x)數(shù)據(jù)字段校驗(yàn)字段接收數(shù)據(jù)f’(x)CRC校驗(yàn)基本工作原理實(shí)際發(fā)送生成多項(xiàng)式生成多項(xiàng)式接收正確接收出錯(cuò)CRC校驗(yàn)的工作過(guò)程描述:
在發(fā)送端,將發(fā)送數(shù)據(jù)多項(xiàng)式,k為生成多項(xiàng)式的最高冪值。
將除以生成多項(xiàng)式,得到:為余數(shù)多項(xiàng)式。將作為整體,從發(fā)送端通過(guò)通信信道傳送到接收端。CRC校驗(yàn)基本工作原理接收端對(duì)接收整體除以生成多項(xiàng)式如果可以整除,則認(rèn)定傳輸正確,如果不能整除,認(rèn)定傳輸錯(cuò)誤。CRC校驗(yàn)基本工作原理CRC校驗(yàn)碼生成過(guò)程舉例:
發(fā)送數(shù)據(jù)比特序列為:110011(6比特)
生成多項(xiàng)式比特序列11001(5比特,K=4)將發(fā)送的數(shù)據(jù)比特序列乘以24,產(chǎn)生的乘積為:1100110000CRC校驗(yàn)基本工作原理將乘積用生成多項(xiàng)式比特序列去除,得到:模二算法減法不借位加法不進(jìn)位CRC校驗(yàn)基本工作原理將余數(shù)序列加到乘積當(dāng)中得到1100111001如果在數(shù)據(jù)傳輸過(guò)程中沒(méi)有發(fā)生傳輸錯(cuò)誤,則接收端收到的帶有CRC校驗(yàn)碼的接收數(shù)據(jù)比特序列能被相同的生成多項(xiàng)式整除,即:CRC校驗(yàn)基本工作原理CRCFIELDgenerator-polynomial生成多項(xiàng)式ACKFIELD(StandardFormataswellasExtendedFormat)ENDOFFRAME(StandardFormataswellasExtendedFormat)REMOTEFRAMEERRORFRAMEERRORFLAGERRORDELIMITEROVERLOADFRAMEOVERLOADFRAME發(fā)出時(shí)刻O(píng)VERLOADFLAGOVERLOADDELIMITERINTERFRAMESPACINGINTERFRAMESPACINGINTERFRAMESPACINGINTERMISSIONINTERFRAMESPACINGBUSIDLEINTERFRAMESPACINGSUSPENDTRANSMISSIONINTERFRAMESPACINGDefinitionof
TRANSMITTER/RECEIVERTRANSMITTERRECEIVERMESSAGEFILTERINGMessagefilteringisbaseduponthewholeIdentifiermaskregistersMESSAGEFILTERINGMESSAGEFILTERINGMESSAGEVALIDATIONThepointoftimeatwhichamessageistakentobevalid,isdifferentforthetransmitterandthereceiversofthemessage.Transmitter:Receivers:CODINGArbitrationERRORHANDLINGThereare5differenterrortypesBITERRORSTUFFERRORCRCERRORFORMERRORACKNOWLEDGMENTERRORBITERRORmonitorsthebusdifferentfromthebitvalueSTUFFERROR6thconsecutiveequalbitlevelCRCERRORnotthesameasthatreceivedintheCRCsequenceFORMERRORoneormoreillegalbitsinafixed-formbitfieldExceptionACKNOWLEDGMENT
ERRORdoesnotmonitora’dominant’bitduringtheACKSLOTErrorSignalling誰(shuí)來(lái)發(fā)送類(lèi)型時(shí)刻FAULTCONFINEMENTWithrespecttofaultconfinementaunitmaybeinoneofthreestates:erroractiveerrorpassivebusoffHowtoconfine(界定)Forfaultconfinementtwocountsareimplementedineverybusunit:1)TRANSMITERRORCOUNT2)RECEIVEERRORCOUNT1.WhenaRECEIVERdetectsanerror,theRECEIVEERRORCOUNTwillbeincreasedby1,2.WhenaRECEIVERdetectsa’dominant’bitasthefirstbitaftersendinganERRORFLAGtheRECEIVEERRORCOUNTwillbeincreasedby8.3.WhenaTRANSMITTERsendsanERRORFLAGtheTRANSMITERRORCOUNTisincreasedby8.4.IfanTRANSMITTERdetectsaBITERRORwhilesendinganACTIVEERRORFLAGoranOVERLOADFLAGtheTRANSMITERRORCOUNTisincreasedby8.5.IfanRECEIVERdetectsaBITERRORwhilesendinganACTIVEERRORFLAGoranOVERLOADFLAGtheRECEIVEERRORCOUNTisincreasedby8.6.Anynodetoleratesupto7consecutive’dominant’bitsaftersendinganACTIVEERRORFLAG,PASSIVEERRORFLAGorOVERLOADFLAG.Afterdetectingthe14thconsecutive’dominant’bit(incaseofanACTIVEERRORFLAGoranOVERLOADFLAG)orafterdetectingthe8thconsecutive’dominant’bitfollowingaPASSIVEERRORFLAGandaftereachsequenceofadditionaleightconsecutive’dominant’bitseveryTRANSMITTERincreasesitsTRANSMITERRORCOUNTby8andeveryRECEIVERincreasesitsRECEIVEERRORCOUNTby8.7.Afterthesuccessfultransmissionofamessage(gettingACKandnoerroruntilENDOFFRAMEisfinished)theTRANSMITERRORCOUNTisdecreasedby1unlessitwasalready0.8.Afterthesuccessfulreceptionofamessage(receptionwithouterroruptotheACKSLOTandthesuccessfulsendingoftheACKbit),theRECEIVEERRORCOUNTisdecreasedby1,9.Anodeis’errorpassive’whentheTRANSMITERRORCOUNTequalsorexceeds128,orwhentheRECEIVEERRORCOUNTequalsorexceeds128.10.Anodeis’busoff’whentheTRANSMITERRORCOUNTisgreaterthanorequalto256.11.An’errorpassive’nodebecomes’erroractive’againwhenboththeTRANSMITERRORCOUNTandtheRECEIVEERRORCOUNTarelessthanorequalto127.12.Annodewhichis’busoff’ispermittedtobecome’erroractive’(nolonger’busoff’)withitserrorcountersbothsetto0after128occurrenceof11consecutive’recessive’bitshavebeenmonitoredonthebus.OSCILLATOR
TOLERANCEAmaximumoscillatortoleranceof1.58%isgiventhereforetheuseofaceramicresonatoratabusspeedofupto125Kbits/sasaruleofthumb;ForthefullbusspeedrangeoftheCANprotocol,aquartzoscillatorisrequired.BITTIMING
REQUIREMENTSNOMINALBITRATETheNominalBitRateisthenumberofbitspersecondtransmittedintheabsenceofresynchronizationbyanidealtransmitter.NOMINALBITTIMENOMINALBITTIME=1/NOMINALBITRATEBITTIMING
REQUIREMENTSTheNominalBitTimecanbethoughtofasbeingdividedintoseparatenon-overlappingtimesegments.ThesesegmentsBITTIMING
REQUIREMENTS-SYNCHRONIZATIONSEGMENT(SYNC_SEG)-PROPAGATIONTIMESEGMENT(PROP_SEG)-PHASEBUFFERSEGMENT1(PHASE_SEG1)-PHASEBUFFERSEGMENT2(PHASE_SEG2)BITTIMING
REQUIREMENTSSYNCSEGThispartofthebittimeisusedtosynchronizethevariousnodesonthebus.Anedgeisexpectedtoliewithinthissegment.PROPSEGThispartofthebittimeisusedtocompensateforthephysicaldelaytimeswithinthenetwork.Itistwicethesumofthesignal’spropagationtimeonthebusline,theinputcomparatordelay,andtheoutputdriverdelay.PHASESEG1
PHASESEG2ThesePhase-Buffer-Segmentsareusedtocompensateforedgephaseerrors.Thesesegmentscanbelengthenedorshortenedbyresynchronization.SAMPLEPOINTTheSAMPLEPOINTisthepointoftimeatwhichthebuslevelisreadandinterpretedasthevalueofthatrespectivebit.It’slocationisattheendofPHASE_SEG1.INFORMATION
PROCESSINGTIMETheINFORMATIONPROCESSINGTIMEisthetimesegmentstartingwiththeSAMPLEPOINTreservedforcalculationthesubsequent(這一位)bitlevel.TIMEQUANTUMTheTIMEQUANTUMisafixedunitoftimederivedfromtheoscillatorperiod.Lengthof
TimeSegmentsSYNC_SEGis1TIMEQUANTUMlong.PROP_SEGisprogrammabletobe1,2,...,8TIMEQUANTAlong.PHASE_SEG1isprogrammabletobe1,2,...,8TIMEQUANTAlong.PHASE_SEG2isthemaximumofPHASE_SEG1andtheINFORMATIONPROCESSINGTIMELengthof
TimeSegmentsTheINFORMATIONPROCESSINGTIMEislessthanorequalto2TIMEQUANTAlong.ThetotalnumberofTIMEQUANTAinabittimehastobeprogrammableatleastfrom8to25.Lengthof
TimeSegmentssamplepointThepositionofthesamplepoint,however,shouldbeselectedincommonforallnodes.ThereforethebittimingofSLIOdevicesmustbecompatibletothefollowingdefinitionofthebittime:同步指兩個(gè)或兩個(gè)以上隨時(shí)間變化的量在變化過(guò)程中保持一定的相對(duì)關(guān)系。當(dāng)兩個(gè)設(shè)備一起工作并對(duì)時(shí)間有精確要求的時(shí)候,就需要在它們之間進(jìn)行同步HARD
SYNCHRONIZATIONAfteraHARDSYNCHRONIZATIONtheinternalbittimeisrestartedwithSYNC_SEG.ThusHARDSYNCHRONIZATIONforcestheedgewhichhascausedtheHARDSYNCHRONIZATIONtoliewithintheSYNCHRONIZATIONSEGMENToftherestartedbittime.RESYNCHRONIZATION
JUMPWIDTHAsaresultofRESYNCHRONIZATIONPHASE_SEG1maybelengthenedorPHASE_SEG2maybeshortened.TheamountoflengtheningorshorteningofthePHASEBUFFERSEGMENTshasanupperboundgivenbytheRESYNCHRONIZATIONJUMPWIDTH.TheRESYNCHRONIZATIONJUMPWIDTHshallbeprogrammablebetween1andmin(4,PHASE_SEG1).RESYNCHRONIZATION
JUMPWIDTHClockinginformationmaybederivedfromtransitionsfromonebitvaluetotheother.Thepropertythatonlyafixedmaximumnumberofsuccessivebitshavethesamevalueprovidesthepossibilityofresynchronizingabusunittothebitstreamduringaframe.Themaximumlengthbetweentwotransitionswhichcanbeusedforresynchronizationis29bittimes.PHASEERROR
ofanedgeThePHASEERRORofanedgeisgivenbythepositionoftheedgerelativetoSYNC_SEG,measuredinTIMEQUANTA.ThesignofPHASEERRORisdefinedasfollows:PHASEERROR
ofanedgee=0iftheedgelieswithinSYNC_SEG.e>0iftheedgeliesbeforetheSAMPLEPOINT.e<0iftheedgeliesaftertheSAMPLEPOINTofthepreviousbit.RESYNCHRONIZATIONTheeffectofaRESYNCHRONIZATIONisthesameasthatofaHARDSYNCHRONIZATION,whenthemagnitudeofthePHASEERRORoftheedgewhichcausestheRESYNCHRONIZATIONislessthanorequaltotheprogrammedvalueoftheRESYNCHRONIZATIONJUMPWIDTH.RESYNCHRONIZATIONWhenthemagnitudeofthePHASEERRORislargerthantheRESYNCHRONIZATIONJUMPWIDTH,andifthePHASEERRORispositive,thenPHASE_SEG1islengthenedbyanamountequaltotheRESYNCHRONIZATIONJUMPWIDTH.andifthePHASEERRORisnegative,thenPHASE_SEG2isshortenedbyanamountequaltotheRESYNCHRONIZATIONJUMPWIDTH.RESYNCHRONIZATIONRESYNCHRONIZATIONSYNCHRONIZATION
RULESHARDSYNCHRONIZATIONandRESYNCHRONIZATIONarethetwoformsofSYNCHRONIZATION.Theyobeythefollowingrules:1.OnlyoneSYNCHRONIZATIONwithinonebittimeisallowed.SYNCHRONIZATION
RULES2
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