modelExponentialElectricConsumerComplex

Exponential frequency and voltage dependency, based on ComplexPowerPort
Diagram of ExponentialElectricConsumerComplex

Extends from TransiEnt.Basics.Icons.ElectricalConsumer (Icon for runnable examples).

Information

1. Purpose of model

Exponential frequency and voltage dependency.

2. Level of detail, physical effects considered, and physical insight

(no remarks)

3. Limits of validity

(no remarks)

4. Interfaces

epp: complex power port

P_el_set: input for electric power in [W] (active power at nominal frequency)

5. Nomenclature

(no remarks)

6. Governing Equations

(no remarks)

7. Remarks for Usage

(no remarks)

8. Validation

(no remarks)

9. References

(no remarks)

10. Version History

Model created by Pascal Dubucq (dubucq@tuhh.de) on 01.10.2014

Adjusted to new interface ComplexPowerPort by Jan-Peter Heckel (jan.heckel@tuhh.de) on 31.01.2018

Model modified by Julian Urbansky, Fraunhofer UMSICHT, in August 2021

Parameters

TypeNameDefaultDescription
BooleanuseInputConnectorPfalseGets parameter from input connector
SI.PowerP_el_set_const0Used, if not useInputConnectorP
BooleanuseCosPhitrue
SI.ReactivePowerQ_el_set0
SI.PowerFactorcosphi_set1
Integerbehavior1
SI.Frequencyf_nsimCenter.f_nNominal frequency
SI.Voltagev_nexponentialStaticConsumerModel.simCenter.v_nNominal voltage
SI.Angledelta_load_start-0.08726646259971647
SI.ActivePowerP_n50Nominal Active Power, use 50 (Hz) for not normalized variabilities Use P_el_set_const for normalized values.
SI.ReactivePowerQ_n50Nominal Reactive Power, use 50 (Hz) for not normalized variabilities. Use Q_el_set for normalized values.
TransiEnt.Consumer.Electrical.Characteristics.Constantvariability
Statistics
BooleanintegrateElPowersimCenter.integrateElPowertrue if electric powers shall be integrated

Connectors

TypeNameDefaultDescription
TransiEnt.Basics.Interfaces.Electrical.ElectricPowerInP_el_setactive power input at nominal frequency
TransiEnt.Basics.Interfaces.Electrical.ComplexPowerPortepp

Components

TypeNameDefaultDescription
TransiEnt.SimCentersimCenter
TransiEnt.ModelStatisticsmodelStatistics
TransiEnt.Consumer.Electrical.Base.ExponentialStaticexponentialStaticConsumerModel
TransiEnt.Components.Boundaries.Electrical.ComplexPower.PQBoundaryboundary
TransiEnt.Components.Statistics.Collectors.LocalCollectors.CollectElectricPowercollectElectricPower
SI.PowerFactorcosphi_iscos(epp.P/sqrt(max(1.0*simCenter.P_el_small, epp.Q^2 + epp.P^2)))
Modelica.Blocks.Sources.RealExpressionP_set
Modelica.Blocks.Sources.RealExpressionQ_set
TransiEnt.Components.Sensors.ElectricVoltageComplexelectricVoltageComplex
Modelica.Blocks.Sources.RealExpressionf_grid
Modelica.Blocks.Math.ProductActivePower
Modelica.Blocks.Sources.RealExpressionP_el_n
Modelica.Blocks.Math.ProductReactivePower
Modelica.Blocks.Sources.RealExpressionQ_el_n
Modelica.Blocks.Math.AddActiveSum
Modelica.Blocks.Math.AddReactiveSum