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一次调节抽汽汽轮机调节系统自整性的研究 Title:StudyontheSelf-StabilizingAbilityofSteamTurbineGoverningSystem Abstract: Thesteamturbinegoverningsystemplaysacrucialroleinmaintainingthestabilityandefficiencyofthepowergenerationprocess.Thisstudyaimstoinvestigatetheself-stabilizingabilityofthegoverningsystemandexplorevariousfactorsthataffectitsperformance.Theresearchfocusesontheadjustmentofextractionsteamsteamturbinesandprovidesinsightsintoenhancingtheirself-integrity.Thestudyentailsacomprehensiveliteraturereview,analysisofkeycontrolalgorithms,andthepresentationofcasestudiestosupportthediscussion.Thefindingshighlightthesignificanceofself-integrityinensuringtheoverallstabilityandreliabilityofsteamturbineoperations. Introduction: Thegoverningsystemofasteamturbineisresponsibleforregulatingturbineoperationandmaintainingthedesiredrotationalspeed.Effectivecontrolstrategiesareessentialforachievingstableandefficientpowergeneration.However,externaldisturbances,suchasloadvariationsandgridfluctuations,maydisruptthebalancebetweentheinputandoutputpoweroftheturbine,compromisingsystemstability.Therefore,itisimperativetoinvestigatetheself-stabilizingabilityofthegoverningsystemtowithstandsuchdisturbancesandquicklyreturntothedesiredoperatingconditions. LiteratureReview: Theliteraturereviewaimstosummarizepreviousresearchonsteamturbinegoverningsystemsandtheirself-stabilizingability.Thissectionexploresthehistoricaldevelopmentofgoverningsystems,highlightingkeymilestonesandadvancements.Furthermore,itexaminesthedifferentcontrolalgorithmsandtechniquesemployedtoenhancesystemstability,suchasProportional-Integral-Derivative(PID)control,fuzzylogiccontrol,andadaptivecontrol.Thereviewalsoinvestigatestheeffectsofextractionsteamonturbinestabilityanddiscussescurrentstrategiesforoptimizingextractionsystems. FactorsAffectingSelf-StabilizingAbility: Tounderstandtheself-stabilizingabilityofthesteamturbinegoverningsystem,itisvitaltoidentifythefactorsthatinfluenceitsperformance.Thissectiondiscusseskeyparameters,includingturbinech