modelSynchron3rd_pm

Synchronous machine pm, 3rd order model, 3-phase dq0

Extends from Partials.Synchron3rdBase (Synchronous machine 3rd base, 3-phase dq0).

Information

Equivalent circuit is on diagram layer of parameter record ACdq0.Machines.Parameters.*

The model is valid for permanent magnet (excite = 2) or reluctance machines (excite = 3).

The relation between 'flux induced by permanent magnet' Psi_pm [Wb] and 'magnetisation' psi_pm [pu] is given by the following relation;

  Psi_pm = psi_pm*V_nom/omega_nom
  psi_pm = Psi_pm*omega_nom/V_nom

More information see Partials.Synchron3rdBase.

Parameters

TypeNameDefaultDescription
Integerpp (from ACmachine)1pole-pair number
Datapar (from Synchron3rdBase)machine parameters
Initialization
Types.DynamicsdynType (from ACmachine)system.dynTypetransient or steady-state model
PS.Currenti_start (from ACmachine)zeros(3)start value of current conductor
SI.Anglephi_el_start (from ACmachine)0initial rotor angle electric

Connectors

TypeNameDefaultDescription
Ports.ACdq0_pterm (from Port_p)positive terminal
Interfaces.Rotation_nairgap (from ACmachine)electro-mechanical connection
Interfaces.ThermalV_nheat (from ACmachine)heat source port {stator, rotor}
Modelica.Blocks.Interfaces.RealOutputphiRotorphi_elrotor angle el

Components

TypeNameDefaultDescription
Topology_ptop (from YDport_p)
PS.Voltagev (from YDport_p)voltage conductor
PS.Currenti (from YDport_p)current conductor
PS.Voltagev_n (from YDport_p)voltage neutral
PS.Currenti_n (from YDport_p)top.i_ncurrent neutral to ground
SI.Anglephi_el (from ACmachine)rotor angle electric (syn: +pi/2)
SI.AngularVelocityw_el (from ACmachine)rotor angular velocity el
SI.Torquetau_el (from ACmachine)electromagnetic torque
PS.Voltagev_s (from SynTransform)stator voltage dq0 in rotor-system
PS.Currenti_s (from SynTransform)stator current dq0 in rotor-system