modelAc7c

IEEE exciter type AC7C model (2016 standard)

Extends from Dynawo.Electrical.Controls.Machines.VoltageRegulators.Standard.BaseClasses.BaseAc7 (IEEE exciter type AC7 base model).

Parameters

TypeNameDefaultDescription
Types.PerUnitAEx (from BaseAc7)Gain of saturation function
Types.PerUnitBEx (from BaseAc7)Exponential coefficient of saturation function
Types.PerUnitKc (from BaseAc7)Rectifier loading factor proportional to commutating reactance
Types.PerUnitKd (from BaseAc7)Demagnetizing factor, function of exciter alternator reactances
Types.PerUnitKdr (from BaseAc7)Regulator derivative gain
Types.PerUnitKe (from BaseAc7)Exciter field resistance constant
Types.PerUnitKf1 (from BaseAc7)Generator field voltage feedback gain
Types.PerUnitKf2 (from BaseAc7)Exciter field current feedback gain
Types.PerUnitKf3 (from BaseAc7)Rate feedback gain
Types.PerUnitKi (from BaseAc7)Potential circuit (current) gain coefficient
Types.PerUnitKia (from BaseAc7)Amplifier integral gain
Types.PerUnitKir (from BaseAc7)Regulator integral gain
Types.PerUnitKl (from BaseAc7)Exciter field current limiter gain
Types.PerUnitKp (from BaseAc7)Potential source gain
Types.PerUnitKpa (from BaseAc7)Amplifier proportional gain
Types.PerUnitKpr (from BaseAc7)Regulator proportional gain
Types.TimetDr (from BaseAc7)Derivative gain washout time constant in s
Types.TimetE (from BaseAc7)Exciter field time constant in s
Types.TimetF (from BaseAc7)Rate feedback time constant in s
Types.AngleThetap (from BaseAc7)Potential circuit phase angle in rad
Types.PerUnitTolLi (from BaseAc7)Tolerance on limit crossing as a fraction of the difference between initial limits of limited integrator
Types.TimetR (from BaseAc7)Stator voltage filter time constant in s
Types.VoltageModulePuVaMaxPu (from BaseAc7)Maximum output voltage of limited PI in pu (user-selected base voltage)
Types.VoltageModulePuVaMinPu (from BaseAc7)Minimum output voltage of limited PI in pu (user-selected base voltage)
Types.VoltageModulePuVeMinPu (from BaseAc7)Minimum exciter output voltage in pu (user-selected base voltage)
Types.VoltageModulePuVfeMaxPu (from BaseAc7)Maximum exciter field current signal in pu (user-selected base voltage)
Types.VoltageModulePuVrMaxPu (from BaseAc7)Maximum output voltage of limited PID in pu (user-selected base voltage)
Types.VoltageModulePuVrMinPu (from BaseAc7)Minimum output voltage of limited PID in pu (user-selected base voltage)
Types.PerUnitXlPu (from BaseAc7)Reactance associated with potential source in pu (base SNom, UNom)
Types.VoltageModulePuEfd0Pu (from BaseAc7)Initial excitation voltage in pu (user-selected base voltage)
Types.CurrentModulePuIr0Pu (from BaseAc7)Initial rotor current in pu (base SNom, user-selected base voltage)
Types.ComplexCurrentPuit0Pu (from BaseAc7)Initial complex stator current in pu (base SNom, UNom)
Types.VoltageModulePuUs0Pu (from BaseAc7)Initial stator voltage in pu (base UNom)
Types.ComplexVoltagePuut0Pu (from BaseAc7)Initial complex stator voltage in pu (base UNom)
Types.VoltageModulePuUUel0Pu (from BaseAc7)0Underexcitation limitation initial output voltage in pu (base UNom)
Types.VoltageModulePuEfe0Pu (from BaseAc7)Initial output voltage of voltage regulator in pu (user-selected base voltage)
Types.VoltageModulePuVb0Pu (from BaseAc7)Initial available exciter field voltage in pu (base UNom)
Types.VoltageModulePuVe0Pu (from BaseAc7)Initial exciter output voltage in pu (user-selected base voltage)
Types.VoltageModulePuVeMax0Pu (from BaseAc7)Maximum exciter output voltage in pu (user-selected base voltage)
Types.PerUnitKc1Rectifier loading factor proportional to commutating reactance (exciter)
Types.PerUnitKrField voltage feedback gain
IntegerPositionOelInput location : (0) none, (1) voltage error summation, (2) take-over at AVR input, (3) take-over at AVR output, (4) take-over at inner loop regulator output
IntegerPositionPssInput location : (0) none, (1) voltage error summation, (2) after take-over UEL
IntegerPositionSclInput location : (0) none, (1) voltage error summation, (2) take-over at AVR input, (3) take-over at AVR output
IntegerPositionUelInput location : (0) none, (1) voltage error summation, (2) take-over at AVR input, (3) take-over at AVR output
BooleanSw1If true, power source derived from terminal voltage, if false, independent from terminal voltage
BooleanSw2If true, power source derived from available exciter field voltage, if false, from rotating exciter output voltage
Types.VoltageModulePuVbMaxPuMaximum available exciter field voltage in pu (base UNom)
Types.VoltageModulePuUOel0Pu0Overexcitation limitation initial output voltage in pu (base UNom)
Types.VoltageModulePuUSclOel0Pu0Stator current overexcitation limitation initial output voltage in pu (base UNom)
Types.VoltageModulePuUSclUel0Pu0Stator current underexcitation limitation initial output voltage in pu (base UNom)

Connectors

TypeNameDefaultDescription
Modelica.Blocks.Interfaces.RealInputIrPu (from BaseAc7)Rotor current in pu (base SNom, user-selected base voltage)
Modelica.ComplexBlocks.Interfaces.ComplexInputitPu (from BaseAc7)Complex stator current in pu (base SNom, UNom)
Modelica.Blocks.Interfaces.RealInputUPssPu (from BaseAc7)Power system stabilizer output voltage in pu (base UNom)
Modelica.Blocks.Interfaces.RealInputUsPu (from BaseAc7)Stator voltage in pu (base UNom)
Modelica.Blocks.Interfaces.RealInputUsRefPu (from BaseAc7)Reference stator voltage in pu (base UNom)
Modelica.ComplexBlocks.Interfaces.ComplexInpututPu (from BaseAc7)Complex stator voltage in pu (base UNom)
Modelica.Blocks.Interfaces.RealInputUUelPu (from BaseAc7)Underexcitation limitation output voltage in pu (base UNom)
Modelica.Blocks.Interfaces.RealOutputEfdPu (from BaseAc7)Excitation voltage in pu (user-selected base voltage)
Modelica.Blocks.Interfaces.RealInputUOelPuOverexcitation limitation output voltage in pu (base UNom)
Modelica.Blocks.Interfaces.RealInputUSclOelPuStator current overexcitation limitation output voltage in pu (base UNom)
Modelica.Blocks.Interfaces.RealInputUSclUelPuStator current underexcitation limitation output voltage in pu (base UNom)

Components

TypeNameDefaultDescription
Dynawo.Electrical.Controls.Machines.VoltageRegulators.Standard.BaseClasses.AcRotatingExciteracRotatingExciter (from BaseAc7)
Modelica.Blocks.Continuous.FirstOrderfirstOrder (from BaseAc7)
Modelica.Blocks.Math.Addadd (from BaseAc7)
Modelica.Blocks.Math.Feedbackfeedback (from BaseAc7)
Modelica.Blocks.Continuous.Derivativederivative (from BaseAc7)
Modelica.Blocks.Continuous.LimPIDpid (from BaseAc7)
Modelica.Blocks.Math.Feedbackfeedback1 (from BaseAc7)
Dynawo.NonElectrical.Blocks.Continuous.LimitedPIlimitedPI (from BaseAc7)
Modelica.Blocks.Math.Productproduct (from BaseAc7)
Modelica.Blocks.Nonlinear.VariableLimitervariableLimiter (from BaseAc7)
Modelica.Blocks.Sources.Constantconst (from BaseAc7)
Modelica.Blocks.Math.Gaingain (from BaseAc7)
Modelica.Blocks.Math.Addadd1 (from BaseAc7)
Modelica.Blocks.Sources.Constantconst1 (from BaseAc7)
Dynawo.Electrical.Controls.Machines.VoltageRegulators.Standard.BaseClasses.PotentialCircuitpotentialCircuit (from BaseAc7)
Modelica.Blocks.Math.Sumsum1 (from BaseAc7)
Modelica.Blocks.Math.Divisiondivision
Dynawo.Electrical.Controls.Machines.VoltageRegulators.Standard.BaseClasses.RectifierRegulationCharacteristicrectifierRegulationCharacteristic
Modelica.Blocks.Math.Productproduct1
Modelica.Blocks.Math.Gaingain1
Modelica.Blocks.Logical.Switchswitch
Modelica.Blocks.Sources.Constantconstant1
Modelica.Blocks.Sources.BooleanConstantbooleanConstant
Modelica.Blocks.Sources.Constantconst2
Modelica.Blocks.Math.Minmin4
Modelica.Blocks.Sources.BooleanConstantbooleanConstant1
Modelica.Blocks.Logical.Switchswitch1
Modelica.Blocks.Math.Gaingain2
Modelica.Blocks.Math.MinMaxmax1
Modelica.Blocks.Math.MinMaxmin1
Modelica.Blocks.Math.Addadd2
Modelica.Blocks.Math.MinMaxmax2
Modelica.Blocks.Math.MinMaxmin2
Modelica.Blocks.Math.Minmin3