




已閱讀5頁,還剩2頁未讀, 繼續(xù)免費(fèi)閱讀
版權(quán)說明:本文檔由用戶提供并上傳,收益歸屬內(nèi)容提供方,若內(nèi)容存在侵權(quán),請(qǐng)進(jìn)行舉報(bào)或認(rèn)領(lǐng)
文檔簡介
StructuralanalysisincontrolsystemsdesignofhydraulicdrivesBennoStein,ElmarVierAbstract:Thedesignofhydrauliccontrolsystemsisacomplexandtime-consumingtaskthat,atthemoment,cannotbeautomatedcompletely.Nevertheless,importantdesignsubtaskslikesimulationorcontrolconceptselectioncanbeefficientlysupportedbyacomputer.Prerequisiteforasuccessfulsupportisawell-foundedanalysisofahydraulicsystemsstructure.Thispaperprovidesasystematicsforanalyzingahydraulicsystematdifferentstructurallevelsandillustrateshowstructuralinformationcanbeusedwithinthedesignprocess.Anotherimportantpointofthispaperistheautomaticextractionofstructuralinformationfromacircuitdiagrambymeansofgraph-theoreticalinvestigations.Keywords:Algorithmsandknowledge-basedmethodsforCACSD;Structuralanalysisofhydraulicsystems;Graphtheory1.IntroductionHydrostaticdrivesprovideadvantageousdynamicpropertiesandthereforerepresentamajordrivingconceptforindustrialapplications.Large-scalehydraulicsystemssuchasplantsinmarinetechnologyaswellasdrivesformachinetoolspossessalargenumberofactuators.Consequently,sophisticatedinter-dependencesbetweensinglecomponentsorentiresubsystemsmayoccur,whichleadstoavarietyofchallenginganddemandingdesignandcontroltasks.Asarepresentativeexamplewithrespecttocomplexityanddimension,Fig.1showsthecircuitdiagramofacold-rollingplant(Wessling,1995;Ebertshauser,1994).Here,morethan20actuatorsworkonthecoiledsteelstrips.Designingsuchlargehydrauliccontrolsystemsimpliesasystematicprocedure.Inpractice,thisisdoneratherimplicitlybasedontheintuitionandtheexperienceofthehumandesigner.Thispaperintroducesasystematicsofhydrostaticdriveswhichrevealtheirunderlyingstructures,aswellasrelationsanddepen-denciesamongsubstructures.Thisapproachallowsathoroughstructuralanalysisfromwhichfundamentaconclusionsfortheautomationofthedesignprocesscanbedrawn.Theconceptsofthispaperhavebeenrealizedandintegratedwithindeco,aknowledge-basedsystemforhydraulicdesignsupport(Stein,1995).Currently,decocombinesbasicCADfacilitiestailoredtouidics,checkingandstructureanalysisalgorithms,simulationmethods,andbasicdesignruleprocessing.Theoperationalizationofhydraulicdesignknowledgerequiresaformaldefinitionandautomaticextractionofstructuralinformationfromacircuitdiagram.Thepapercontributeswithintheserespects;itisorganizedasfollows.Section2describesbothconceptuallyandexemplarilythestructurallevelsatwhichahydraulicsystemcanbeinvestigated.Section3brieflydiscussesthebenefitsthatgoalongwithastructuralanalysis.Section4preciselydefinesdifferenttypesofcouplingsbetweenthefunctionalunitsofahydraulicsystem,henceestablishingabasisforacomputer-basedanalysis.Moreover,itisoutlinedhowastructuralanalysisisautomated.Section5outlinestheexploitationofstructuralinformationwithindeco.2.StructuralanalysisofhydraulicsystemsThemajorityofhydraulicsystemsisdesignedbyexploitingtheexperienceandintuitionofasingleengineer.Duetothelackofastructuralmethodology,athoroughanalysisofthesystemstructureisnotcarriedout.Instead,alimitedrepertoryofpossiblesolutionsisused,makingtheresulthighlydependentonthecapabilitiesoftheindividual.Suchanapproachissuitableonlyforrecurringdesigntaskswithlittlevariation.Inthefollowing,asystematicsofthestructuralset-upofhydraulicplantsisintroducedwhichleadstoaproblem-orientedsystemanalysis.Itsapplicationtoahydrostaticdrivegivenasapreliminarydesignfacilitatesaconsequentandpurposivederivationofstructuralinformation,whichisnecessarytomakethesystemsbehaviormeetthecustomersdemands.2.1.StructurallevelsofhydraulicsystemsThesystematicsdevelopedhereisbasedonthreelevelsofabstraction.Thedifferentiationbetweenfunctionalstructure,componentstructure,andsystem-theoreticalstructurecorrespondstosystemdescriptionsofdifferentcharacteristics(Fig.2).Fromthisdistinctionresultsanoverallviewofhowtoinfluencethesystemsbehavior.Toillustratetheconceptofstructurallevels,wewillconcentrateonasamplesubsystemofthecold-rollingplant,thefour-rollstandissketchedinFig.3.Thefunctionalstructureshowsthefundamentalmodesofactionofahydrauliccircuitbyanalyzingthedifferenttasks(functions)theplanthastofulfill.Itrepresentssomekindofqualitativesystemdescription.Akeyelementwithinthefunctionalstructureistheso-calledhydraulicaxis,whichisdefinedasfollows.AhydraulicaxisArepresentsandfulfillsasubfunctionfofanentirehydraulicplant.Adefinestheconnectionsandtheinterplayamongthoseworking,control,andsupplyelementsthatrealizef.Thehydraulicactuatorsofthefour-rollstandperformtwotaskseachofwhichdefinedbyadirectionalloadandmotionalquantities.ArepresentationoftherollstandatthefunctionallevelisgiveninFig.4.Thedetectionofhydraulicaxesandtheirinterdependencesadmitsfar-reachingconclusions,whicharestatedinSection3.Onthelevelofthecomponentstructurethechosenrealizationofafunctionisinvestigated.Thearrangementstructurecomprisesinformationonthehydraulicelements(pumps,valves,cylinders,etc.)aswellastheirgeometricandphysicalarrangement.Bytheswitching-statestructuretheentiretyofthepossiblecombinationsofswitchingpositionsischaracterized:Avalve,forinstance,canbeopenorclosed.Fig.6depictstherepresentationoftherollstandatthecomponentlevel.Thesystem-theoreticalstructurecontainsinformationonthedynamicbehaviorofboththehydraulicdriveasawholeanditssinglecomponents.Commonwaysofdescribingdynamicsaredifferentialanddifferenceequationsorthestate-spaceform(Schwarz,1991).Thesystem-theoreticalviewcomprisesinformationonthecontrolledquantities,aswellasthedynamicbehaviorofthecontrolledsystem.TheblockdiagraminFig.7revealsthesystem-theoreticalstructureoftherollstand.Bycomparinganalysisandsimulationresultswiththeperformancedemandsatthedrive,adecisioncanbemadeforeachhydraulicaxiswhetheropen-orclosed-loopcontrolconceptsareadequate.Inafurtherstep,anappropriatecontrolstrategy(linear,nonlinear,etc.)canbeassigned.Remarks.Whilethefunctionalstructureyieldsaqualitativerepresentation,thesystemdescriptionbecomesmorequantitativeatthecomponentandsystem-theoreticallevel,respectively.Moreover,theanalysisofthestructuralset-upshowsinwhichwaythebehaviorofahydraulicplantcanbeinfluenced(cf.Fig.2):(1)atfirst,thefunctionalstructuremustbeconsideredasinvariant,becauseitresultsfromthecustomersdemands.Onlyifthegivenstructureprovestobeunsatisfactory,amodificationresultingfromaheuristicanalysisapproachisadvisable;(2)notethatatthecomponentlevel,acombinationofheuristicandanalyticmethodsisrequiredforthevariationorexchangeofhydraulicelements,whichformthecontrolledsystem;(3)thesystem-theoreticallevelfacilitatestheinvestigationofthedynamicbehavior:controltheoryprovidesananalyticapproachfortheselectionofasuitablecontrolstrategy,parameterization,etc.2.2.HydraulicaxesandtheircouplingsFocusingontheinvestigationofthefunctionalstructureofhydraulicsystems,thedetectionandevaluationofhydraulicaxesisofcentralinterest.Theiranalysiscontributestoadeeperunderstandingoftheinnercorrelationsoftheplantandprovidesanoverviewoftheenergyflowswithrespecttothefunctionstobefulfilled.ThedefinitionofthehydraulicaxisgiveninSection2.1isbasedonthecriterionofelementsworkingtogetherinordertofulfillasinglefunction.Notethatseveralactuators(hydraulicmotors/cylinders)maycontributetothesamefunction,thusformingasinglehydraulicaxis(Fig.8).Thissituationisgivenfor(a)identicalsub-circuitsthatarecontrolledbyonesinglecontrolelement,(b)synchronizedmovementsthatarecarriedoutbyopenorclosedloopcontrol,or(c,d)mechanicalcouplingssuchasguidesandgearunitsthatenforceauniquebehavior.Beyondtheconsiderationofisolatedhydraulicaxes,itisnecessarytoinvestigatetheirinterdependences.ThefollowingcouplingtypeshavebeenworkedoutLevel0(Nocoupling.)Hydraulicaxespossessnocoupling,ifthereisneitherapowernoraninformationalconnectionbetweenthem.Level1(Informationalcoupling.)Hydraulicaxeswhichareconnectedonlybycontrolconnectionsarecalledinformationallycoupled.Level2(Parallelcoupling.)Hydraulicaxeswhichpossesstheirownaccesstoacommonpowersupplyarecoupledinparallel.Level3(Seriescoupling.)Aseriescouplingconnectsthehydraulicaxeswhosepowersupply(ordisposal)isrealizedviatheprecedingorthefollowingaxis.Level4(Sequentialcoupling.)Asequentialcouplingisgiven,iftheperformanceofafollowingaxisdependsonthestatevariables,e.g.thepressureorthepositionoftheprecedingoneinordertoworkinasequence.Applyingtheconceptoffunctionalstructuretothecold-rollingplantofFig.1,15hydraulicaxesalongwiththeircouplingscanbefound.Theleft-handsideofFig.9envisionsthemembershipofthecomponentsinthediagramtotheaxes,theright-handsideshowstheentirecouplingschemeintheformofatree.3.BenefitsofastructuralanalysisAstructuralanalysisofhydraulicsystemsrevealsbasicdesigndecisions.Especiallythefunctionalanalysis,whichisbasedonthedetectionofasystemshydraulicaxes,willsimplifythemodification,theextension,andtheadaptationofthesystem(Stein,1996).Theseparatetreatmentofhydraulicaxesremarkablyreducesthedesigneffortwithinthefollowingrespects:Smartsimulation.Smartsimulationisahumanstrategywhenanalyzingacomplexsystem:subsystemsareidentified,cutfree,andsimulatedontheirown.Thisstrategyreducesthesimulationcomplexityandsimplifiestheinterpretationofitsresults.Hydraulicaxesestablishsuitedsubsystemstobecutfree,sincetheyperformanindivisiblebutcompletesubtask.Staticdesign.Informationonthehydraulicaxesdrivingconcept(open/closedcenter,loadsensing,regenerativecircuit,etc.)allowstheselectionofcomputationproceduresrelatingthestaticdesign.Moreover,theapplicationofmodificationknowledgehastoconsidertheaxescouplinglevels.Controlconceptselection.Theconsiderationofcouplingsbetweeninputandoutputvariablessuppliesanecessarydecisionbasisfortheselectionofcontrolconcepts.Analyzingthedecouplabi
溫馨提示
- 1. 本站所有資源如無特殊說明,都需要本地電腦安裝OFFICE2007和PDF閱讀器。圖紙軟件為CAD,CAXA,PROE,UG,SolidWorks等.壓縮文件請(qǐng)下載最新的WinRAR軟件解壓。
- 2. 本站的文檔不包含任何第三方提供的附件圖紙等,如果需要附件,請(qǐng)聯(lián)系上傳者。文件的所有權(quán)益歸上傳用戶所有。
- 3. 本站RAR壓縮包中若帶圖紙,網(wǎng)頁內(nèi)容里面會(huì)有圖紙預(yù)覽,若沒有圖紙預(yù)覽就沒有圖紙。
- 4. 未經(jīng)權(quán)益所有人同意不得將文件中的內(nèi)容挪作商業(yè)或盈利用途。
- 5. 人人文庫網(wǎng)僅提供信息存儲(chǔ)空間,僅對(duì)用戶上傳內(nèi)容的表現(xiàn)方式做保護(hù)處理,對(duì)用戶上傳分享的文檔內(nèi)容本身不做任何修改或編輯,并不能對(duì)任何下載內(nèi)容負(fù)責(zé)。
- 6. 下載文件中如有侵權(quán)或不適當(dāng)內(nèi)容,請(qǐng)與我們聯(lián)系,我們立即糾正。
- 7. 本站不保證下載資源的準(zhǔn)確性、安全性和完整性, 同時(shí)也不承擔(dān)用戶因使用這些下載資源對(duì)自己和他人造成任何形式的傷害或損失。
最新文檔
- GB/T 45674-2025網(wǎng)絡(luò)安全技術(shù)生成式人工智能數(shù)據(jù)標(biāo)注安全規(guī)范
- 2025-2026學(xué)年馬邊彝族自治縣三年級(jí)數(shù)學(xué)第一學(xué)期期末預(yù)測試題含解析
- 2024年云南省昆明市尋甸回族彝族自治縣三年級(jí)數(shù)學(xué)第一學(xué)期期末教學(xué)質(zhì)量檢測模擬試題含解析
- 2024年湖南省懷化市部分縣區(qū)三上數(shù)學(xué)期末統(tǒng)考試題含解析
- 八年級(jí)語文上冊(cè) 第四單元 第17課 奇妙的克隆教師配套 新人教版課件
- 2025年執(zhí)業(yè)護(hù)士考試應(yīng)試技巧及試題答案
- 2025年執(zhí)業(yè)護(hù)士考試實(shí)戰(zhàn)試題與答案
- 行政管理與社會(huì)影響力試題及答案
- 行政法學(xué)實(shí)踐與理論試題及答案
- 藥學(xué)領(lǐng)域中的研究趨勢與分析考題試題及答案
- 小學(xué)高年級(jí)學(xué)生身體滿意度和人際關(guān)系困擾的關(guān)系及自尊的中介作用
- 醫(yī)院保密知識(shí)培訓(xùn)課件
- 標(biāo)準(zhǔn)化基礎(chǔ)知識(shí)培訓(xùn)課件
- 第4章我們生活的大地知識(shí)點(diǎn)清單-2024-2025學(xué)年浙教版七年級(jí)下冊(cè)科學(xué)
- 軍事通信基礎(chǔ)知識(shí)
- 建筑工地挖掘機(jī)吊裝施工方案
- 8.2 法治政府 課件-高中政治統(tǒng)編版必修三政治與法治
- 糖尿病合并痛風(fēng)
- 中西文化鑒賞知到智慧樹章節(jié)測試課后答案2024年秋鄭州大學(xué)
- 《天津市新型職業(yè)農(nóng)民培育問題研究》
- 車險(xiǎn)理賠重大案管理辦法
評(píng)論
0/150
提交評(píng)論