1Introduction1.1BasicConcepts1.1.1Rolling1.1.2HotRolling1.1.3ColdRolling1.1.4RollingMill1.1.5TandemMill1.1.6TotallyIntegratedAutomation1.1.7DistributedControlSystem1.2Motivation1.3OutlineoftheContents2ProcessDescriptionofModernHotStripMill2.1GeneralDescription
2.2ReheatFurnace2.3RoughingMill2.4FinishingMill2.4.1ControlRequirement2.4.2FinishingMillDisturbances2.5LaminarCooling2.6DownCoiler3ModellingofFinishingMill3.1SimplifiedPlant3.2Looper-StripSystem3.3MainDrive3.4RollActuators3.5Coiler3.6TransportDelay3.7Deformation3.8HeatTransfer3.9Slip3.10ModelCompletenessAnalysis3.11LinearState-SpaceForm3.11.1State-SpaceRepresentationofaSingleStand3.11.2State-spaceRepresentationoftheEntireMill4AutomaticWidthControl(AWC)4.1Basiccontrolstrategy4.2SS(ShortStroke)control
4.3RF(RollForce)-AWC4.4FF-AWC4.4.1ControlcalculationinLevel14.4.2CalculationinLevel24.5TheedgerFB-AWC4.5.1CalculationinLevel14.5.2CalculationinLevel24.6TensionFB-AWC4.6.1DynamicControlcalculation4.6.2Influencecoefficientcalculation4.7DirectGeneralizedPredictiveControlBasedonRBFinFinishingStripWidthControl
4.7.1FinishingMillAutomaticWidthControl4.7.1GeneralizedPredictiveControlMethod4.7.3Simulation5AutomaticGaugeControl(AGC)5.1GapCompensations5.2BackupRollBearingSpeedandForceEffect(OilFilmCompensation)5.3RollThermalandWear5.4WorkRollBendingForceCompensation(RollBendingCompensation)
5.5TensionLossCompensation5.6Gaugemeter5.6.1Modesofoperation5.6.2Implementation5.7EccentricityCompensation5.8XrayMonitorRegulatordetail5.8.1XrayDeviation5.8.2Regulator5.8.3GainChangesbyProductThickness5.8.4ExtraGain5.8.5EffectsofTransportDelay5.8.6AutoFan
5.8.7InhibitOvershoot5.8.8LoadBalance5.8.9TensionEffects5.8.10DraftCompensation5.8.11MaximumCorrectionClamp5.8.12GaugemeterDependency5.9Feedforwarddetail5.9.1Description5.9.2AdditionalFeatures5.9.3TuningUp5.10MassFlowCompensation5.10.1MassFlowConcepts5.10.2MassFlowErrors5.10.3MassFlowCalculationErrors6AutomaticProfileandShapeControl6.1DescriptionofHSMPinAnsteel6.1.1Hotstripmillprocess6.1.2Millconfiguration6.2Gapcrownmodelofrollsystem6.2.1Rollthermalcrownmodel6.2.2Rollwearcrownmodel6.2.3Compositivegapcrownofrollsystem
6.3Predictionmodelofstripshape6.3.1Relationshipbetweenstripcrownandflatness6.3.2Influenceoflateralflow6.3.3Predictionofstripcrownanddifferentialstrain6.3.4Predictionofstripflatness6.4Thestrategyofshapesetupmodel6.4.1Rangeofprofilecontrol6.4.2Strategyofcrownallocation
6.4.3Referencevaluesformechanicalactuators6.4.4Shapeevaluation6.5ApplicationinAnsteel1,700-mmHSMP7TheoryofQualityMonitoringforHotStripMill7.1TheTheoryandMethodofMultivariateStatisticalProcessMonitoring7.1.1Quality-RelevantFaultMonitoringBasedonEfficientProjectiontoLatentStructureswithApplicationtoHotStripMillProcess
7.1.2ASchemetoKeyPerformanceIndicatorBasedPredictionandDiagnosisinComplexIndustrialProcessandItsApplicationtoHotStripMill7.2QualityMonitoringMethodforNonlinearProcess7.2.1ContributionRatePlotforNonlinearQuality-RelatedFaultDiagnosiswithApplicationtoHotStripMillProcess
7.2.2Quality-RelatedProcessMonitoringBasedonTotalKernelPLSModelandItsIndustrialApplication7.3QualityMonitoringMethodforNon-GaussProcess7.3.1ANewKernelIndependentandPrincipalComponentsAnalysisBasedProcessMonitoringApproachwithApplicationtoHotStripMillProcess
7.3.2ANewData-DrivenProcessMonitoringSchemeforKeyPerformance7.4DynamicNon-GaussianApproachforQuality-RelatedFaultDiagnosis7.4.1Methodology7.4.2Quality-relatedprocessmonitoringbasedonDPLS-ICAmodel7.4.3Industrialapplication7.5QualityMonitoringMethodforBatchandMultimodeprocess
7.5.1AQuality-BasedNonlinearFaultDiagnosisFrameworkFocusingonIndustrialMultimodeBatchProcesses7.5.2Quality-RelatedPredictionandMonitoringofMulti-ModeProcessesUsingMultiplePLSwithApplicationtoHotStripMill7.5.3Quality-RelevantFaultDetectionandDiagnosisforHotStripMillProcesswithMulti-SpecificationandMulti-BatchMeasurements
8Data-DrivenQualityMonitoringTechniquesforDistributedParameterSystemswithApplicationtoHot-RolledStripLaminarCoolingProcess8.1Processdescription8.1.1Modelingofdistributedparametersystemsdescription8.1.2Finitedimensionalapproximationfordistributedparametersystemsinlaminarcoolingprocess
8.2Model-baseddesignofresidualgeneratorforDPS8.2.1Model-baseddesignofresidualgeneratorforDPS8.2.2Residualevaluationandthresholdsetting8.3Benchmarky8.3.1Data-drivenrealizationofsystemidentificationforstatespacerepresentation8.3.2Data-drivenrealizationoftheobtainedkernelrepresentationinHSLC
9RootCauseDiagnosisandPropagationPathIdentificationforQuality-RelatedFault9.1JointData-DrivenFaultDiagnosisIntegratingCausalityGraphwithStatisticalProcessMonitoringforComplexIndustrialProcesses9.1.1Correlationanalysisofprocessvariables9.1.2MonitoringofCIbyusingPPCAforfaultdetection
9.1.3Integratedfaultdiagnosisbasedoncasualitygraphandstatisticalprocessmonitoring9.1.4Applicationinhotstripmill9.2ANovelData-BasedQuality-RelatedFaultDiagnosisSchemeforFaultDetectionandRootCauseDiagnosiswithApplicationtoHotStripMillProcess9.2.1MCVA-basedquality-relatedfaultdetectionfordynamicprocesses
9.2.2Rootcausediagnosisofquality-relatedfaults9.2.3Casestudyonhotstripmillprocess