谐振式传感器/北京航空航天大学“研究生英文教材”系列丛书
出版时间:
2014-04
版次:
1
ISBN:
9787512415041
定价:
69.00
装帧:
平装
开本:
16开
纸张:
胶版纸
页数:
309页
字数:
448千字
正文语种:
英语
6人买过
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Thisbooksystematicallydiscussedthepertinentfundamentaltheoryoftheresonantsensors.Thensomekindsofresonantsensorsincludingresonantpresssensor,resonantaccelerationsensor,resonantangularratesensor,resonantmassflowsensorandsurfaceacousticwaveresonantsenorareintroduced.
Itcanbeselectedasreferencetothemasters,undergraduatesandpertinentengineeringstaffswhoseresearchdirectionareinstrumentationscienceandtechnology,controlscienceandengineering,mechanicalengineeringetc. Chapter1FundamentalTheoryofResonantSensors
1.Introduction
1.2ResonancePhenomenon
1.3BasicStructureoftheResonatorSensors
1.4SensitiveMechanismoftheResonatorSensors
1.5TheClosed-IoopSystemoftheResonatorSensors
1.5.1Time-domainAnalysis
1.5.2ComplexFrequencyDomainAnalysis
1.6MechanicalQualityFactoroftheResonantSensitiveElements
1.6.1DefinitionandCalculation
1.6.2TheAnalysisoftheAffectingFactorsofSensors
1.6.3MethodsonImprovingtheMechanicalQualityFactor
1.7MethodsofMeasurementoftheFrequencyOutputResonatorSensors
1.7.1FrequencyMethod
1.7.2PeriodicMethod
1.8TheDesignFeaturesoftheResonatorSensors
1.9TheCharacteristicsandAdvantagesoftheResonatorSensors
QuestionsandExercises
Chapter2ResonantPressureSensor
2.1VibratingStringTypePressureSensor
2.1.1StructureandPrinciple
2.1.2CharacteristicEquation
2.1.3ExcitationMode
2.2ResonantDiaphragmPressureSensor
2.2.1StructureandPrinciple
2.2.2CharacteristicEquation
2.3ElectromagneticExcitationVibratingCylinderPressureSensor
2.3.1StructureandPrinciple
2.3.2CharacteristicEquation
2.3.3ExcitationMode
2.3.4CharacteristicsLinearizationandErrorCompensation
2.4PiezoelectricExcitingResonantCylinderPressureSensor
2.4.1StructureandPrinciple
2.4.2CharacteristicsofPiezoelectricExcitation
2.4.3TransformationofPicking-upSignals
2.4.4TheRealizationofaStableSingleModalSelf-excitingSystem
2.4.5RelatedProblemsaboutDoubleModal
2.5QuartzVibrationBeamPressureSensor
2.5.1StructureandPrinciple
2.5.2CharacteristicFunction
2.6MicromechanicalSiliconResonantPressureSensor
2.6.1SensingStructureandMathematicalModel
2.6.2TheProcessofSignalTransformation
2.6.3TheTemperatureFieldModelandThermalCharacteristicAnalysisoftheBeamResonator
2.7MicroMechanicalSiliconResonantPressureSensorwithDifferentialOutput
2.7.1SensingStructureandWorkingMechanism
2.7.2CharacteristicEquationQuestionsandExercises
Chapter3ResonantInertialSensor
3.Introduction
3.2QuartzVibratingBeamAccelerationSensor
3.3ResonantSiliconMicromachinedAccelerationSensor
3.4PiezoelectricExcitationResonantCylindricalShellAngularRateSensor
3.5StaticExcitingHemisphericalResonantAngularVelocitySensor
3.6MicroSiliconResonantAngularVelocitySensor
3.6.1SiliconCapacitiveSurfaceMicromechanicalGyroscope
3.6.2SiliconMicromechanicalGyroscopewithDirectFrequencyOutputQuestionsandExercises
……
Chapter4ResonantMassFlowSensor
Chapter5SurfaceAcousticWaveResonantSensor
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内容简介:
Thisbooksystematicallydiscussedthepertinentfundamentaltheoryoftheresonantsensors.Thensomekindsofresonantsensorsincludingresonantpresssensor,resonantaccelerationsensor,resonantangularratesensor,resonantmassflowsensorandsurfaceacousticwaveresonantsenorareintroduced.
Itcanbeselectedasreferencetothemasters,undergraduatesandpertinentengineeringstaffswhoseresearchdirectionareinstrumentationscienceandtechnology,controlscienceandengineering,mechanicalengineeringetc.
-
目录:
Chapter1FundamentalTheoryofResonantSensors
1.Introduction
1.2ResonancePhenomenon
1.3BasicStructureoftheResonatorSensors
1.4SensitiveMechanismoftheResonatorSensors
1.5TheClosed-IoopSystemoftheResonatorSensors
1.5.1Time-domainAnalysis
1.5.2ComplexFrequencyDomainAnalysis
1.6MechanicalQualityFactoroftheResonantSensitiveElements
1.6.1DefinitionandCalculation
1.6.2TheAnalysisoftheAffectingFactorsofSensors
1.6.3MethodsonImprovingtheMechanicalQualityFactor
1.7MethodsofMeasurementoftheFrequencyOutputResonatorSensors
1.7.1FrequencyMethod
1.7.2PeriodicMethod
1.8TheDesignFeaturesoftheResonatorSensors
1.9TheCharacteristicsandAdvantagesoftheResonatorSensors
QuestionsandExercises
Chapter2ResonantPressureSensor
2.1VibratingStringTypePressureSensor
2.1.1StructureandPrinciple
2.1.2CharacteristicEquation
2.1.3ExcitationMode
2.2ResonantDiaphragmPressureSensor
2.2.1StructureandPrinciple
2.2.2CharacteristicEquation
2.3ElectromagneticExcitationVibratingCylinderPressureSensor
2.3.1StructureandPrinciple
2.3.2CharacteristicEquation
2.3.3ExcitationMode
2.3.4CharacteristicsLinearizationandErrorCompensation
2.4PiezoelectricExcitingResonantCylinderPressureSensor
2.4.1StructureandPrinciple
2.4.2CharacteristicsofPiezoelectricExcitation
2.4.3TransformationofPicking-upSignals
2.4.4TheRealizationofaStableSingleModalSelf-excitingSystem
2.4.5RelatedProblemsaboutDoubleModal
2.5QuartzVibrationBeamPressureSensor
2.5.1StructureandPrinciple
2.5.2CharacteristicFunction
2.6MicromechanicalSiliconResonantPressureSensor
2.6.1SensingStructureandMathematicalModel
2.6.2TheProcessofSignalTransformation
2.6.3TheTemperatureFieldModelandThermalCharacteristicAnalysisoftheBeamResonator
2.7MicroMechanicalSiliconResonantPressureSensorwithDifferentialOutput
2.7.1SensingStructureandWorkingMechanism
2.7.2CharacteristicEquationQuestionsandExercises
Chapter3ResonantInertialSensor
3.Introduction
3.2QuartzVibratingBeamAccelerationSensor
3.3ResonantSiliconMicromachinedAccelerationSensor
3.4PiezoelectricExcitationResonantCylindricalShellAngularRateSensor
3.5StaticExcitingHemisphericalResonantAngularVelocitySensor
3.6MicroSiliconResonantAngularVelocitySensor
3.6.1SiliconCapacitiveSurfaceMicromechanicalGyroscope
3.6.2SiliconMicromechanicalGyroscopewithDirectFrequencyOutputQuestionsandExercises
……
Chapter4ResonantMassFlowSensor
Chapter5SurfaceAcousticWaveResonantSensor
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