modelTurbineGenerator

Turbine with generator
Diagram of TurbineGenerator

Extends from Modelica.Icons.Example (Icon for runnable examples).

Information

Second example 'from voltage source to generator model' with additional turbine.

Lower part of example (for comparison with and interpretation of upper part):
simplest generator description as a "voltage behind reactance".

Upper part: 3-winding generator model, isotrope with x_d = x_q.
Instead of a fixed power-angle as in the previous example, a turbine delivers the appropriate power. The correspondence is still:

  Vgen1.alpha0 ~ generator.powerAngle (mod 2pi)
  Vgen1.v0     ~ exciter.v_f

In both cases the terminal voltage is fixed by the bus voltage. The results should coincide.

See and compare for example:

 sensor.p[1:2]      active and reactive power
 Vgen1.alpha0 with generator.powerAngle.

up users guide

Parameters

TypeNameDefaultDescription
SI.AngularVelocityw_start2*pi*generator.par.f_nom/generator.par.ppinitial angular velocity (start-value if ini='st')

Components

TypeNameDefaultDescription
PowerSystems.Systemsystem
PowerSystems.Mechanics.TurboGroups.SingleMassTGturboGrp
PowerSystems.AC3ph.Machines.Synchron3rd_eegenerator
PowerSystems.Control.Governors.GovernorSimplegovernor
PowerSystems.Control.Exciters.ExciterSimpleexciter
PowerSystems.AC3ph.Machines.Control.Excitationexcitation
PowerSystems.AC3ph.Sensors.Psensorsensor
PowerSystems.AC3ph.Sources.InfBusinfBus
PowerSystems.AC3ph.Sources.VoltageVgen1
PowerSystems.AC3ph.Impedances.InductorRLgen1
PowerSystems.AC3ph.Sensors.Psensorsensor1
PowerSystems.AC3ph.Sources.VoltageVBus1
PowerSystems.AC3ph.Nodes.GroundOnegrd1
PowerSystems.AC3ph.Nodes.GroundOnegrd2
PowerSystems.AC3ph.Nodes.GroundOnegrd3
PowerSystems.Common.Thermal.BdCondVbdCond