packageSignalN
Generator models that are based on SignalN for the frequency handling
Extends from Icons.Package (Icon for standard packages).
Information
These generators models provide an active power PGenPu that depends on their setpoint PGen0Pu and their participation in an emulated frequency regulation that calculates the signal N, that is common to all the generators in a connected component and which increases or decreases the generation of each generator.This model is used with the frequency handling model SignalN and cannot be used with DYNModelOmegaRef as the frequency is not explicitly expressed.
Contents
| Name | Description |
|---|---|
| Base models for SignalN generator models | |
| Base initialization models for SignalN generator models | |
| Model for generator PQ based on SignalN for the frequency handling and with a proportional reactive power regulation | |
| Initialisation model for generator PQ based on SignalN for the frequency handling and with a proportional reactive power regulation | |
| Model for generator PQ based on SignalN for the frequency handling, with a proportional reactive power regulation and that participates in the Secondary Frequency Regulation (SFR) | |
| Initialisation model for generator PQ based on SignalN for the frequency handling, with a proportional reactive power regulation and that participates in the Secondary Frequency Regulation (SFR) | |
| Model for generator PQ with a PQ diagram, based on SignalN for the frequency handling and with a proportional reactive power regulation | |
| Initialisation model for generator PQ with a PQ diagram, based on SignalN for the frequency handling and with a proportional reactive power regulation | |
| Model for generator PQ with a PQ diagram, based on SignalN for the frequency handling, with a proportional reactive power regulation and that participates in the Secondary Frequency Regulation (SFR) | |
| Initialisation model for generator PQ with a PQ diagram, based on SignalN for the frequency handling, with a proportional reactive power regulation and that participates in the Secondary Frequency Regulation (SFR) | |
| Model for generator PV based on SignalN for the frequency handling | |
| Initialisation model for generator PV based on SignalN for the frequency handling. In this model, QNomAlt is calculated using QMax. | |
| Model for generator PV based on SignalN for the frequency handling and that participates in the Secondary Frequency Regulation (SFR) | |
| Initialisation model for generator PV based on SignalN for the frequency handling and that participates in the Secondary Frequency Regulation (SFR) | |
| Initialisation model for generator PV based on SignalN for the frequency handling. In this model, QNomAlt is a parameter. | |
| Model for generator PV based on SignalN for the frequency handling with an N points PQ diagram. | |
| Initialisation model for generator PV based on SignalN for the frequency handling and with a diagram for handling the reactive power limits. In this model, QNomAlt is calculated using QMax0. | |
| Model for generator PV based on SignalN for the frequency handling, with an N points PQ diagram and that participates in the Secondary Frequency Regulation (SFR) | |
| Initialisation model for generator PV based on SignalN for the frequency handling, with an N points PQ diagram and that participates in the Secondary Frequency Regulation (SFR) | |
| Initialisation model for generator PV based on SignalN for the frequency handling and with a diagram for handling the reactive power limits. In this model, QNomAlt is a parameter. | |
| Model for generator PV based on SignalN for the frequency handling and with a proportional voltage regulation | |
| Initialisation model for generator PV based on SignalN for the frequency handling and with a proportional voltage regulation | |
| Model for generator PV based on SignalN for the frequency handling, with a proportional voltage regulation and that participates in the Secondary Frequency Regulation (SFR) | |
| Initialisation model for generator PV based on SignalN for the frequency handling, with a proportional voltage regulation and that participates in the Secondary Frequency Regulation (SFR) | |
| Model for generator PV based on SignalN for the frequency handling and a remote voltage regulation | |
| Initialisation model for generator PV based on SignalN for the frequency handling and a remote voltage regulation | |
| Model for generator PV based on SignalN for the frequency handling and a remote voltage regulation and that participates in the Secondary Frequency Regulation (SFR) | |
| Initialisation model for generator PV based on SignalN for the frequency handling and a remote voltage regulation and that participates in the Secondary Frequency Regulation (SFR) | |
| Model for generator PV with a PQ diagram, based on SignalN for the frequency handling and a remote voltage regulation | |
| Initialisation model for generator PV with a PQ diagram, based on SignalN for the frequency handling and a remote voltage regulation | |
| Model for generator PV with a PQ diagram, based on SignalN for the frequency handling and a remote voltage regulation and that participates in the Secondary Frequency Regulation (SFR) | |
| Initialisation model for generator PV with a PQ diagram, based on SignalN for the frequency handling and a remote voltage regulation and that participates in the Secondary Frequency Regulation (SFR) | |
| Model for generator PV based on SignalN for the frequency handling, with a simplified transformer and a voltage regulation at stator | |
| Initialisation model for generator PV based on SignalN for the frequency handling, with a transformer and a voltage regulation at stator. The voltage module reference at stator is calculated using the voltage module reference at terminal. | |
| Model for generator PV based on SignalN for the frequency handling, with a simplified transformer, a voltage regulation at stator and with an N points PQ diagram. | |
| Initialisation model for generator PV based on SignalN for the frequency handling, with a transformer, a voltage regulation at stator and with an N points PQ diagram. The voltage module reference at stator is calculated using the voltage module reference at terminal. |