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1、MicroprocessBasedProtectiveRelaysThisarticledescribesthebenefitsofmicroprocess(μP)relayperfmanceitscapabilitiesbeyondpreviousprotectiverelayingtechnologies.Thisarticlealsodiscussesamultiplequalitymeasurementapproachtoobs
2、ervingmeasuringthencalculatingμPrelayreliabilityunavailability.Thisisanimptantconsiderationfindustrialcommercialfacilitiesthatarebeingrequiredtorepairreplaceoldelectromechanicalsolidstate(analogdigital)protectiverelaying
3、equipmentbecauseofequipmentmalfunctionsmisoperationsaccidentaltrippingobsolescentparts.AlthoughμPrelayshavebeencommerciallyavailablefmethan20yearsresearchedfthepast40yearsindustrialcommercialplantengineerstendtobemereluc
4、tanttoembracetheμPtechnology.ElectricpowerutilitiesinNthAmericahaveaggressivelyedtoreplaceolderprotectionequipmentbyupgradingreplacingtheequipmentwithnewμPrelayswheneverwhereverpossible.Thisarticleisusefulfconsultingengi
5、neersindustrialcommercialelectricpowerplantengineersiginalequipmentmanufacturer(OEM)engineerswhoareinterestedindoingreliabilityunavailabilitypredictionsfindustrialelectricpowerdistributionsystemsthatemployμPrelays.Furthe
6、rmethisarticleassiststhosemakingμPrelaycostversusreliabilitydecisionswhenperfmingfacilitiesstudiestoevaluateimprovethesystemreliabilitycapacityofanexistingplant.Thisarticleexplesthebenefitsinperfmance(sensitivityspeed)re
7、liability(securityivitydependability)availabilityefficiencyeconomicssafetycompatibilitycapabilitiesofμPmultifunctionprotectiverelayingtechnologyoverthepreviousexistingtechnologiesnamelyelectromechanicalsolidstate.Thesugg
8、estedtypicalvaluesqualitymeasurementsanalysisofprotectiverelayingperfmancereliabilityunavailabilityareintendedtobearecommendationofwhatcouldbeusedasabenchmarkinourindustry.In1988thearticle‘‘PracticalBenefitsofMicroproces
9、sBasedRelaying’’[1]presentedatthe15thAnnualWesternProtectiveRelayConference(WPRC)describedtheequipmenthardwarehowtypicalearlymodelμPbasedprotectiverelaysperfmthesignalprocessingfrominputslogicmanipulationscalculations.La
10、terin19911992[2][3]providedgooddetailedexplanationsexamplesoftheincreasedoperationalflexibilitytheadditionalfeaturesofμPrelaysthatbetteraccommodatesystemdisturbancesrelayfailuresprotectionphilosophiesnumberoffailuresinth
11、atperiodprovidedthatasufficientnumberoffailureshasoccurredinthatperiod.MTBFsobserved(repaireditems):Fastatedperiodinthelifeofanitemthemeanvalueofthelengthoftimebetweenconsecutivefailurescomputedastheratioofthecumulativeo
12、bservedtimetothenumberoffailuresunderthestatedconditions.1)Thefailurecriteriashallbestatedgenerallythemaincriteriaisfailuretoconfmtospecification.2)Cumulativetimeisthesumofthetimesduringwhicheachindividualitemhasbeenperf
13、mingitsrequiredfunctionunderthestatedconditions.3)ThisMTBFisthereciprocaloftheobservedfailurerateduringtheperiod.4)MTBFdoesnotindicateusefullife.Meantimebetweenremovals(MTBR)observed:Themeanvalueofthelengthoftimebetweenc
14、onsecutiveunscheduledunitremovalscomputedastheratioofthecumulativeobservedserviceyearsofinstalledbasetothenumberofhardwareunrepeatablesoftwaremanufacturingprocessfieldfailures.Removalrate:Themeannumberofremovalsofacompon
15、entperyearthatis1MTBR.Outage:Thestateofacomponentsystemwhenitisnotavailabletoproperlyperfmitsintendedfunctionbecauseofsomeeventdirectlyassociatedwiththatcomponentsystem.Interruption:Thecompletelossofvoltagefatimeperiod.T
16、hetimebaseoftheinterruptionisacterizedasfollows:Instantaneous:0.5–30cyclesMomentary:30cyclesto2sTempary:2sto2minSustained:greaterthan2min.Inducedfailure:Failureattributabletotheapplicationofstressesbeyondthestatedcapabil
17、itiesoftheitem.Initialqualityerrrate(IQ):Thenumberoffailuresoccurringduringthefirsttwodaysofownershipofaunitexpressedasapercentofthoseunitstestedplacedinservice.Maintenanceindicat(MI)observed:Themeanvalueofthelengthoftim
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