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1、Brushless DC Motors – Part I: Construction and Operating Principles Electricalequipmentoftenhasatleastonemotorusedtorotateordisplaceanobjectfromitsinitialposition.Thereareavarietyofmotortypesavailableinthemarket,includinginductionmotors,servomotors,DCmotors(brushedandbrushless),etc.Dependingupontheapplicationrequirements,aparticularmotorcanbeselected.However,acurrenttrendisthatmostnewdesignsaremovingtowardsBrushlessDCmotors,popularlyknownasBLDCmotors.Thisarticlewillconcentrateonthefollowingaspe。
2、ctsofBLDCmotordesign:ConstructionoftheBLDCmotorOperationoftheBLDCmotorTorqueandEfficiencyrequirementsComparisonwithInductionandBrushedDCmotorsSelectioncriteriaforaBLDCmotorMotorcontrol–Speed,PositionandTorque,tobecoveredinPartIIofthisarticle.ConstructionBLDCmotorshavemanysimilaritiestoACinductionmotorsandbrushedDCmotorsintermsofconstructionandworkingprinciplesrespectively.Likeallothermotors,BLDCmotorsalsohavearotorandastator.StatorSimilartoanInductionACmotor,theBLDCmotorstatorismadeoutofla。
3、minatedsteelstackeduptocarrythewindings.Windingsinastatorcanbearrangedintwopatterns;i.e.astarpattern(Y)ordeltapattern(∆).ThemajordifferencebetweenthetwopatternsisthattheYpatterngiveshightorqueatlowRPMandthe∆patterngiveslowtorqueatlowRPM.Thisisbecauseinthe∆configuration,halfofthevoltageisappliedacrossthewindingthatisnotdriven,thusincreasinglossesand,inturn,efficiencyandtorque.SteellaminationsinthestatorcanbeslottedorslotlessasshowninFigure2.Aslotlesscorehaslowerinductance,thusitcanrunatveryhighsp。
4、eeds.Becauseoftheabsenceofteethinthelaminationstack,requirementsforthecoggingtorquealsogodown,thusmakingthemanidealfitforlowspeedstoo(whenpermanentmagnetsonrotorandtoothonthestatoralignwitheachotherthen,becauseoftheinteractionbetweenthetwo,anundesirablecoggingtorquedevelopsandcausesripplesinspeed).Themaindisadvantageofaslotlesscoreishighercostbecauseitrequiresmorewindingtocompensateforthelargerairgap.Properselectionofthelaminatedsteelandwindingsfortheconstructionofstatorarecrucialtomotorperforma。
5、nce.Animproperselectionmayleadtomultipleproblemsduringproduction,resultinginmarketdelaysandincreaseddesigncosts.RotorTherotorofatypicalBLDCmotorismadeoutofpermanentmagnets.Dependingupontheapplicationrequirements,thenumberofpolesintherotormayvary.Increasingthenumberofpolesdoesgivebettertorquebutatthecostofreducingthemaximumpossiblespeed.Anotherrotorparameterthatimpactsthemaximumtorqueisthematerialusedfortheconstructionofpermanentmagnet;thehigherthefluxdensityofthematerial,thehigherthetorque.Worki。
6、ngPrinciplesandOperationTheunderlyingprinciplesfortheworkingofaBLDCmotorarethesameasforabrushedDCmotor;i.e.,internalshaftpositionfeedback.IncaseofabrushedDCmotor,feedbackisimplementedusingamechanicalcommutatorandbrushes.WithainBLDCmotor,itisachievedusingmultiplefeedbacksensors.Themostcommonlyusedsensorsarehallsensorsandopticalencoders.Note:Hallsensorsworkonthehall-effectprinciplethatwhenacurrent-carryingconductorisexposedtothemagneticfield,chargecarriersexperienceaforcebasedonthevoltagedeveloped。
7、acrossthetwosidesoftheconductor.Ifthedirectionofthemagneticfieldisreversed,thevoltagedevelopedwillreverseaswell.ForHall-effectsensorsusedinBLDCmotors,wheneverrotormagneticpoles(NorS)passnearthehallsensor,theygenerateaHIGHorLOWlevelsignal,whichcanbeusedtodeterminethepositionoftheshaft.Inacommutationsystem–onethatisbasedonthepositionofthemotoridentifiedusingfeedbacksensors–twoofthethreeelectricalwindingsareenergizedatatimeasshowninfigure4.Infigure4(A),theGREENwindinglabeled“001”isenergizedastheNOR。
8、THpoleandtheBLUEwindinglabeledas“010”isenergizedastheSOUTHpole.Becauseofthisexcitation,theSOUTHpoleoftherotoralignswiththeGREENwindingandtheNORTHpolealignswiththeREDwindinglabeled“100”.Inordertomovetherotor,the“RED”and“BLUE”windingsareenergizedinthedirectionshowninfigure4(B).ThiscausestheREDwindingtobecometheNORTHpoleandtheBLUEwindingtobecometheSOUTHpole.Thisshiftingofthemagneticfieldinthestatorproducestorquebecauseofthedevelopmentofrepulsion(Redwinding–NORTH-NORTHalignment)andattractionforces(B。
9、LUEwinding–NORTH-SOUTHalignment),whichmovestherotorintheclockwisedirection. Brushless DC Motors‐‐Part II: Control Principles HavingunderstoodtheconstructionandbasicoperatingprincipleofBLDCmotorinthefirstpartofthisarticle,itbecomesimportanttounderstandthemotorcontroloptionsavailableforthereliableoperationandprotectionofmotors.Basedonthefunctionsserved,motorcontrolcanbeclassifiedintofollowingcategories:SpeedcontrolTorquecontrolMotorprotectionImplementationofthesecontrolfunctionsrequiresmonitori。
10、ngofoneormoremotorparametersandthentakingcorrespondingactiontoachievetherequiredfunctionality.Beforegettingintothedetailsofthesecontrolfunctionimplementations,itisimportanttounderstandtheimplementationoflogicandhardwarerequiredtobuilduptherotationofthemotorortoestablishcommutation.CommutationimplementationAsdiscussedinthepreviouspartofthisarticle,basedonthepositionofthemotor(identifiedusingfeedbacksensors),twoofthethreeelectricalwindingsareenergizedatatime.Tobeabletoenergizethewindings,externalci。
本文标题:Brushless-DC--Motors-直流无刷电机控制基本原理
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