modelThyristorCenterTap2Pulse

Two pulse thyristor rectifier with center tap

Extends from Icons.Converter (Converter icon), PowerConverters.Interfaces.ACDC.ACtwoPin (Positive and negative AC pin), PowerConverters.Interfaces.ACDC.DCpin (Single DC pin), Modelica.Electrical.Analog.Interfaces.ConditionalHeatPort (Partial model to include a conditional HeatPort in order to describe the power loss via a thermal network), Interfaces.Enable.Enable2 (Partial model providing enable parameter and optional enable input for two firing signals).

Information

General information about AC/DC converters can be found at the AC/DC converter concept

This a two pulse thyristor rectifier with center tap. In order to operate this rectifier a voltage with center tap is required. The center tap has to be connected with the negative pin of the load. The circuit topology is the same as in Examples.ACDC.RectifierCenterTap2Pulse.

Parameters

TypeNameDefaultDescription
SI.ResistanceRonThyristor1e-05Closed thyristor resistance
SI.ConductanceGoffThyristor1e-05Opened thyristor conductance
SI.VoltageVkneeThyristor0Thyristor forward threshold voltage
BooleanoffStart_ptrueBoolean start value of variable thyristor_p.off
BooleanoffStart_ntrueBoolean start value of variable thyristor_n.off
BooleanuseHeatPort (from ConditionalHeatPort)false= true, if heatPort is enabled
SI.TemperatureT (from ConditionalHeatPort)293.15Fixed device temperature if useHeatPort = false
Integerm (from Enable)3Number of phases
Enable
BooleanuseConstantEnable (from Enable)trueDisable boolean input and use constantEnable, if true
BooleanconstantEnable (from Enable)trueConstant enabling of firing signals

Connectors

TypeNameDefaultDescription
Modelica.Electrical.Analog.Interfaces.PositivePinac_p (from ACtwoPin)Positive AC input
Modelica.Electrical.Analog.Interfaces.NegativePinac_n (from ACtwoPin)Negative AC input
Modelica.Electrical.Analog.Interfaces.PositivePindc_p (from DCpin)Positive DC output
Modelica.Thermal.HeatTransfer.Interfaces.HeatPort_aheatPort (from ConditionalHeatPort)Conditional heat port
Modelica.Blocks.Interfaces.BooleanInputenable (from Enable)Enables fire and notFire
Modelica.Blocks.Interfaces.BooleanInputfire_p (from Enable1)Firing signal of positive potential transistor
Modelica.Blocks.Interfaces.BooleanInputfire_n (from Enable2)Firing signal of negative potential transistor

Components

TypeNameDefaultDescription
SI.VoltagevAC (from ACtwoPin)ac_p.v - ac_n.vAC voltages
SI.CurrentiAC (from ACtwoPin)ac_p.iAC currents
SI.PowerpowerAC (from ACtwoPin)vAC*iACAC power
SI.VoltagevDC (from DCpin)dc_p.vDC potential
SI.CurrentiDC (from DCpin)dc_p.iDC current
SI.PowerpowerDC (from DCpin)vDC*iDCDC power
SI.PowerLossPower (from ConditionalHeatPort)Loss power leaving component via heatPort
SI.TemperatureT_heatPort (from ConditionalHeatPort)Temperature of heatPort
PowerConverters.Enable.EnableLogicenableLogic (from Enable)Enabling logic
Modelica.Blocks.Logical.AndandCondition_p (from Enable1)And condition for positive firing signal
Modelica.Blocks.Logical.AndandCondition_n (from Enable2)And condition for negative firing signal
Modelica.Electrical.Analog.Ideal.IdealThyristorthyristor_pThyristors conducting positive pin AC potentials
Modelica.Electrical.Analog.Ideal.IdealThyristorthyristor_nThyristors conducting negative pin AC potentials