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This information is part of the Modelica Standard Library maintained by the Modelica Association.
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Modelica.Utilities.Examples Demonstrate usage of function Streams.readRealMatrix |
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Modelica.Utilities.Examples Demonstrate usage of function Streams.writeRealMatrix |
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Modelica.Utilities.Examples Demonstrate usage of Examples.readRealParameter/.expression |
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Modelica.Math.FastFourierTransform.Examples Example demonstrating the use of an FFT calculation during simulation (and storing only amplitudes on file) |
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Modelica.Math.FastFourierTransform.Examples Example demonstrating the use of an FFT calculation during simulation (and storing both amplitudes and phases on file) |
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Modelica.Math.Random.Examples Generate random numbers with the various random number generators |
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Modelica.Math.Nonlinear.Examples Integrate function in a model |
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Modelica.Thermal.HeatTransfer.Examples Example to demonstrate variants to generate FMUs (Functional Mock-up Units) |
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Modelica.Thermal.HeatTransfer.Examples Second order thermal model of a motor |
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Modelica.Thermal.HeatTransfer.Examples Control temperature of a resistor |
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Modelica.Thermal.HeatTransfer.Examples Simple conduction demo |
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Modelica.Thermal.FluidHeatFlow.Examples Two cylinder system |
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Modelica.Thermal.FluidHeatFlow.Examples Two connected open tanks |
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Modelica.Thermal.FluidHeatFlow.Examples Test the OpenTank model |
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Modelica.Thermal.FluidHeatFlow.Examples Water pumping station |
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Modelica.Thermal.FluidHeatFlow.Examples Cooling of two hot masses |
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Modelica.Thermal.FluidHeatFlow.Examples Cooling of one hot mass |
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Modelica.Thermal.FluidHeatFlow.Examples Cooling circuit with parallel branches and drop out of pump |
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Modelica.Thermal.FluidHeatFlow.Examples Cooling circuit with drop out of pump |
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Modelica.Thermal.FluidHeatFlow.Examples Cooling circuit with pump and valve |
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Modelica.Thermal.FluidHeatFlow.Examples Indirect cooling circuit |
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Modelica.Thermal.FluidHeatFlow.Examples Cooling circuit with parallel branches |
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Modelica.Thermal.FluidHeatFlow.Examples Simple cooling circuit |
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Modelica.Media.Incompressible.Examples Test Glycol47 Medium model |
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Modelica.Media.Examples.Tests.MediaTestModels.LinearFluid Test Modelica.Media.Incompressible.Examples.Essotherm65 |
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Modelica.Media.Examples.Tests.MediaTestModels.LinearFluid Test Modelica.Media.Incompressible.Examples.Glycol47 |
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Modelica.Media.Examples.Tests.MediaTestModels.Water Test Modelica.Media.Water.WaterIF97_ph |
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Modelica.Media.Examples.Tests.MediaTestModels.Water Test Modelica.Media.Water.WaterIF97_pT |
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Modelica.Media.Examples.Tests.MediaTestModels.Water Test Modelica.Media.Water.WaterIF97OnePhase_ph |
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Modelica.Media.Examples.Tests.MediaTestModels.Water Test Modelica.Media.Water.IdealSteam |
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Modelica.Media.Examples.Tests.MediaTestModels.Water Test Modelica.Media.Water.ConstantPropertyLiquidWater |
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Modelica.Media.Examples.Tests.MediaTestModels.Incompressible Test Modelica.Media.Incompressible.Examples.Essotherm65 |
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Modelica.Media.Examples.Tests.MediaTestModels.Incompressible Test Modelica.Media.Incompressible.Examples.Glycol47 |
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SimpleNaturalGasFixedComposition Modelica.Media.Examples.Tests.MediaTestModels.IdealGases Test mixture gas Modelica.Media.IdealGases.MixtureGases.SimpleNaturalGas |
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Modelica.Media.Examples.Tests.MediaTestModels.IdealGases Test mixture gas Modelica.Media.IdealGases.MixtureGases.SimpleNaturalGas |
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Modelica.Media.Examples.Tests.MediaTestModels.IdealGases Test single gas Modelica.Media.IdealGases.SingleGases.N2 |
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Modelica.Media.Examples.Tests.MediaTestModels.IdealGases Test single gas Modelica.Media.IdealGases.SingleGases.Air |
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Modelica.Media.Examples.Tests.MediaTestModels.Air Test Modelica.Media.Air.MoistAir |
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Modelica.Media.Examples.Tests.MediaTestModels.Air Test Modelica.Media.Air.DryAirNasa |
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Modelica.Media.Examples.Tests.MediaTestModels.Air Test Modelica.Media.Air.SimpleAir |
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Modelica.Media.Examples.TestOnly Test IdealGas.SingleMedia.N2 medium model |
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Modelica.Media.Examples.TestOnly Test IdealGas.SingleMedia.N2 medium model |
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Modelica.Media.Examples.TestOnly Ideal gas flue gas model |
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Modelica.Media.Examples.TestOnly Ideal gas air medium model |
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Modelica.Media.Examples.SolveOneNonlinearEquation Solve h = h_TX(TX) for T, if h is given for ideal gas NASA |
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Modelica.Media.Examples.SolveOneNonlinearEquation Inverse computation for incompressible media |
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Modelica.Media.Examples.SolveOneNonlinearEquation Solve h = h_T(T), s = s_T(T) for T, if h or s is given for ideal gas NASA |
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Modelica.Media.Examples.SolveOneNonlinearEquation Solve y = A*sin(w*x) for x, given y |
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Modelica.Media.Examples.R134a Example 2 for R134a |
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Modelica.Media.Examples.R134a Example 1 for R134a |
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Modelica.Media.Examples.ReferenceAir Solve h = h_pTX(p, T, X), s = s_pTX(p, T, X) for T, if h or s is given |
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Modelica.Media.Examples.ReferenceAir Solve h = h_pT(p, T), s = s_pT(p, T) for T, if h or s is given |
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Modelica.Media.Examples.ReferenceAir Example 2 for moist air |
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Modelica.Media.Examples.ReferenceAir Example 1 for moist air |
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Modelica.Media.Examples.ReferenceAir Example for moist air |
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Modelica.Media.Examples.ReferenceAir Example 2 for dry air |
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Modelica.Media.Examples.ReferenceAir Example 1 for dry air |
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Modelica.Media.Examples.TwoPhaseWater Test the above model |
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Modelica.Media.Examples Produces plot data for psychrometric charts |
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Modelica.Media.Examples Example for moist air |
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Modelica.Media.Examples Test gas mixtures |
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Modelica.Media.Examples WaterIF97 medium model |
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Modelica.Media.Examples IdealGas H20 medium model |
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Modelica.Media.Examples Example for Water.SimpleLiquidWater medium model |
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Modelica.Fluid.Examples.Explanatory Illustrating a case in which kinetic terms play a major role in the momentum balance |
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Modelica.Fluid.Examples.Explanatory Differences between using one port with and without explicit junction model and two port sensors for fluid temperature measuring |
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Modelica.Fluid.Examples Demonstrates the parameterization of a pump and a pipe for given nominal values |
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Modelica.Fluid.Examples.TraceSubstances Demonstrates a room volume with CO2 controls |
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Modelica.Fluid.Examples.TraceSubstances Demonstrates a room volume with CO2 accumulation |
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Modelica.Fluid.Examples.HeatExchanger simulation for the heat exchanger model |
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Modelica.Fluid.Examples Comparing a circular with a non-circular pipe |
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Modelica.Fluid.Examples Multi-way connections of pipes with dynamic momentum balance, pressure wave and flow reversal |
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Modelica.Fluid.Examples Multi-way connections of pipes and incompressible medium model |
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Modelica.Fluid.Examples.AST_BatchPlant.Test Demonstrates a tank with one constant top inlet mass flow rate and a bottom outlet into the ambient |
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Modelica.Fluid.Examples.AST_BatchPlant.Test Demonstrates a tank with one constant top inlet mass flow rate and a bottom outlet into the ambient |
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Modelica.Fluid.Examples.AST_BatchPlant.Test Demonstrates a tank with one constant top inlet mass flow rate and a bottom outlet into the ambient |
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Modelica.Fluid.Examples.AST_BatchPlant.Test Demonstrates a tank with one constant top inlet mass flow rate and a bottom outlet into the ambient |
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Modelica.Fluid.Examples.AST_BatchPlant.Test |
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Modelica.Fluid.Examples.AST_BatchPlant.Test Tank with one time-varying top inlet mass flow rate and a bottom outlet into the ambient |
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Modelica.Fluid.Examples.AST_BatchPlant |
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Modelica.Fluid.Examples.ControlledTankSystem Demonstrating the controller of a tank filling/emptying system |
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Modelica.Fluid.Examples.Tanks Show the treatment of empty tanks |
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Modelica.Fluid.Examples.Tanks Two tanks connected with pipes at different heights |
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Modelica.Fluid.Examples.Tanks Demonstrating the usage of SimpleTank |
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Modelica.Fluid.Examples.DrumBoiler Complete drum boiler model, including evaporator and supplementary components |
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Modelica.Fluid.Examples Simple model of a heating system |
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Modelica.Fluid.Examples Model of a pumping system for drinking water |
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Modelica.Mechanics.Translational.Examples Example to demonstrate variants to generate FMUs (Functional Mock-up Units) |
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Modelica.Mechanics.Translational.Examples Demonstrate the usage of the translational eddy current brake |
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Modelica.Mechanics.Translational.Examples Demonstrate the modeling of heat losses |
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Modelica.Mechanics.Translational.Examples Demonstrate braking of a translational moving mass |
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Modelica.Mechanics.Translational.Examples Demonstrate usage of ElastoGap |
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Modelica.Mechanics.Translational.Examples Preload of a spool using ElastoGap models |
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Modelica.Mechanics.Translational.Examples Use of model Stop |
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Modelica.Mechanics.Translational.Examples Sensors for translational systems |
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Modelica.Mechanics.Translational.Examples Oscillator demonstrates the use of initial conditions |
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Modelica.Mechanics.Translational.Examples Use of damper models |
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Modelica.Mechanics.Translational.Examples Use of model accelerate |
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Modelica.Mechanics.Translational.Examples Use of arrows in Mechanics.Translational |
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Modelica.Mechanics.Translational.Examples Setting of initial conditions |
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Modelica.Mechanics.Translational.Examples Examples for the used sign conventions |
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Modelica.Mechanics.Rotational.Examples Drive train with disengaged one-way clutch |
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Modelica.Mechanics.Rotational.Examples Drive train with actively engaged one-way clutch |
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Modelica.Mechanics.Rotational.Examples Example to demonstrate variants to generate FMUs (Functional Mock-up Units) |
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Modelica.Mechanics.Rotational.Examples Demonstrate the usage of the rotational eddy current brake |
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Modelica.Mechanics.Rotational.Examples Simple Gearshift |
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Modelica.Mechanics.Rotational.Examples Demonstrate the modeling of heat losses |
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Modelica.Mechanics.Rotational.Examples Demonstrate coupling Rotational - Translational |
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Modelica.Mechanics.Rotational.Examples Example to demonstrate backlash |
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Modelica.Mechanics.Rotational.Examples Example to show possible usage of support flange |
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Modelica.Mechanics.Rotational.Examples Example that failed in the previous version of the LossyGear version |
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Modelica.Mechanics.Rotational.Examples Example to show combination of LossyGear and BearingFriction |
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Modelica.Mechanics.Rotational.Examples Example to show that gear efficiency may lead to stuck motion |
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Modelica.Mechanics.Rotational.Examples Drive train with 3 dynamically coupled clutches |
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Modelica.Mechanics.Rotational.Examples Drive train with clutch and brake |
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Modelica.Mechanics.Rotational.Examples First example: simple drive train with grounded elements |
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Modelica.Mechanics.Rotational.Examples First example: simple drive train |
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Modelica.Mechanics.MultiBody.Examples.Systems.RobotR3 Six degree of freedom robot with path planning, controllers, motors, brakes, gears and mechanics |
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Modelica.Mechanics.MultiBody.Examples.Systems.RobotR3 Model of one axis of robot (controller, motor, gearbox) with simple load |
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Modelica.Mechanics.MultiBody.Examples.Constraints Body attached by one spring and universal joint or constrained to environment |
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Modelica.Mechanics.MultiBody.Examples.Constraints Body attached by one spring and spherical joint or constrained to environment |
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Modelica.Mechanics.MultiBody.Examples.Constraints Body attached by one spring and revolute joint or constrained to environment |
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Modelica.Mechanics.MultiBody.Examples.Constraints Body attached by one spring and two prismatic joints or constrained to environment |
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Modelica.Mechanics.MultiBody.Examples.Rotational3DEffects Demonstrates the usage of a BevelGear1D model and how to calculate the power of such an element |
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Modelica.Mechanics.MultiBody.Examples.Rotational3DEffects Demonstrate usage of GearConstraint model |
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Modelica.Mechanics.MultiBody.Examples.Rotational3DEffects Demonstrates usage of model Rotor1D mounted on a moving body |
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Modelica.Mechanics.MultiBody.Examples.Rotational3DEffects Demonstrates usage of models Rotor1D and Mounting1D |
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Modelica.Mechanics.MultiBody.Examples.Rotational3DEffects Demonstrates that a cylindrical body can be replaced by Rotor1D model |
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Modelica.Mechanics.MultiBody.Examples.Loops Mechanism with three planar kinematic loops and one degree-of-freedom with analytic loop handling (with JointRRR joints) |
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Modelica.Mechanics.MultiBody.Examples.Loops Planar four bars mechanism with one kinematic loop (with RevolutePlanarLoopConstraint joint) |
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Modelica.Mechanics.MultiBody.Examples.Loops One kinematic loop with four bars (with JointSSP joint; analytic solution of non-linear algebraic loop) |
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Modelica.Mechanics.MultiBody.Examples.Loops One kinematic loop with four bars (with UniversalSpherical joint; 1 non-linear equation) |
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Modelica.Mechanics.MultiBody.Examples.Loops One kinematic loop with four bars (with only revolute joints; 5 non-linear equations) |
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Modelica.Mechanics.MultiBody.Examples.Loops V6 engine with 6 cylinders, 6 planar loops, 1 degree-of-freedom and analytic handling of kinematic loops |
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Modelica.Mechanics.MultiBody.Examples.Loops V6 engine with 6 cylinders, 6 planar loops and 1 degree-of-freedom |
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Modelica.Mechanics.MultiBody.Examples.Loops Model of one cylinder engine with gas force and analytic loop handling |
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Modelica.Mechanics.MultiBody.Examples.Loops Model of one cylinder engine with gas force and preparation for assembly joint JointRRP |
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Modelica.Mechanics.MultiBody.Examples.Loops Model of one cylinder engine |
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Modelica.Mechanics.MultiBody.Examples.Elementary Demonstrate the visualization of a sine surface, as well as a torus and a wheel constructed from a surface |
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Modelica.Mechanics.MultiBody.Examples.Elementary Demonstrate the modeling of a user-defined gravity field |
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Modelica.Mechanics.MultiBody.Examples.Elementary Demonstrate the modeling of heat losses |
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Modelica.Mechanics.MultiBody.Examples.Elementary Rolling wheel set that is pulled by a force |
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Modelica.Mechanics.MultiBody.Examples.Elementary Rolling wheel set that is driven by torques driving the wheels |
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Modelica.Mechanics.MultiBody.Examples.Elementary Single wheel rolling on ground starting from an initial speed |
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Modelica.Mechanics.MultiBody.Examples.Elementary 3-dim. springs in series and parallel connection |
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Modelica.Mechanics.MultiBody.Examples.Elementary Point mass hanging on a spring |
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Modelica.Mechanics.MultiBody.Examples.Elementary Mass attached with a spring to the world frame |
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Modelica.Mechanics.MultiBody.Examples.Elementary Simple spring/damper/mass system |
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Modelica.Mechanics.MultiBody.Examples.Elementary Rigidly connected point masses in a point gravity field |
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Modelica.Mechanics.MultiBody.Examples.Elementary Two point masses in a point gravity field (rotation of bodies is neglected) |
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Modelica.Mechanics.MultiBody.Examples.Elementary Two point masses in a point gravity field |
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Modelica.Mechanics.MultiBody.Examples.Elementary Simple spring/damper/mass system |
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Modelica.Mechanics.MultiBody.Examples.Elementary Simple pendulum with one revolute joint and one body |
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Modelica.Mechanics.MultiBody.Examples.Elementary Demonstrate line force with two point masses using a JointUPS and alternatively a LineForceWithTwoMasses component |
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Modelica.Mechanics.MultiBody.Examples.Elementary Determine spring constant such that system is in steady state at given position |
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Modelica.Mechanics.MultiBody.Examples.Elementary Free flying body attached by two springs to environment |
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Modelica.Mechanics.MultiBody.Examples.Elementary Demonstrate usage of ForceAndTorque element |
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Modelica.Mechanics.MultiBody.Examples.Elementary Demonstrate how to initialize a double pendulum so that its tip starts at a predefined position |
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Modelica.Mechanics.MultiBody.Examples.Elementary Simple double pendulum with two revolute joints and two bodies |
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Modelica.Magnetic.QuasiStatic.FundamentalWave.Examples.BasicMachines.SynchronousMachines Test example: Synchronous reluctance machine fed by current source |
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Modelica.Magnetic.QuasiStatic.FundamentalWave.Examples.BasicMachines.SynchronousMachines Electrical excited synchronous machine operating as generator |
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Modelica.Magnetic.QuasiStatic.FundamentalWave.Examples.BasicMachines.SynchronousMachines Test example: PermanentMagnetSynchronousMachine, investigating maximum torque per Amps |
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Modelica.Magnetic.QuasiStatic.FundamentalWave.Examples.BasicMachines.SynchronousMachines Test example: PermanentMagnetSynchronousMachine fed by current source |
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Modelica.Magnetic.QuasiStatic.FundamentalWave.Examples.BasicMachines.SynchronousMachines Permanent magnet synchronous machine operated at mains with step torque load |
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Modelica.Magnetic.QuasiStatic.FundamentalWave.Examples.BasicMachines.SynchronousMachines Test example: PermanentMagnetSynchronousMachine with inverter |
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Modelica.Magnetic.QuasiStatic.FundamentalWave.Examples.BasicMachines.InductionMachines Starting of induction machine with slip rings |
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Modelica.Magnetic.QuasiStatic.FundamentalWave.Examples.BasicMachines.InductionMachines Characteristic curves of induction machine with slip rings |
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Modelica.Magnetic.QuasiStatic.FundamentalWave.Examples.BasicMachines.InductionMachines Steady-state initialization of induction machine with squirrel cage |
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Modelica.Magnetic.QuasiStatic.FundamentalWave.Examples.BasicMachines.InductionMachines Induction machine with squirrel cage and losses |
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Modelica.Magnetic.QuasiStatic.FundamentalWave.Examples.BasicMachines.InductionMachines Induction machine with squirrel cage and inverter driving a conveyor |
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Modelica.Magnetic.QuasiStatic.FundamentalWave.Examples.BasicMachines.InductionMachines Induction machine with squirrel cage starting with transformer |
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Modelica.Magnetic.QuasiStatic.FundamentalWave.Examples.BasicMachines.InductionMachines Induction machine with squirrel cage starting Y-D |
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Modelica.Magnetic.QuasiStatic.FundamentalWave.Examples.BasicMachines.InductionMachines Induction machine with squirrel cage started directly on line (DOL) |
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Modelica.Magnetic.QuasiStatic.FundamentalWave.Examples.BasicMachines.InductionMachines Characteristic curves of Induction machine with squirrel cage |
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Modelica.Magnetic.QuasiStatic.FundamentalWave.Examples.Components Comparison of equivalent circuits of eddy current loss models |
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Modelica.Magnetic.QuasiStatic.FundamentalWave.Examples.Components Multi phase inductance |
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Modelica.Magnetic.QuasiStatic.FluxTubes.Examples.Leakage Magnetic circuit with generic leakage mode |
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Modelica.Magnetic.QuasiStatic.FluxTubes.Examples.Leakage Testing cylinder leakage models |
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Modelica.Magnetic.QuasiStatic.FluxTubes.Examples.FixedShapes Magnetic circuit using different cuboid sections |
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Modelica.Magnetic.QuasiStatic.FluxTubes.Examples.FixedShapes Magnetic circuit using different cylinder sections |
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Modelica.Magnetic.QuasiStatic.FluxTubes.Examples Non linear inductor with ferromagnetic core |
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Modelica.Magnetic.QuasiStatic.FluxTubes.Examples Linear inductor with ferromagnetic core |
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Modelica.Magnetic.FundamentalWave.Examples.BasicMachines Starting of multi phase synchronous reluctance machine with inverter |
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Modelica.Magnetic.FundamentalWave.Examples.BasicMachines Starting of synchronous reluctance machine with inverter |
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Modelica.Magnetic.FundamentalWave.Examples.BasicMachines Test example: ElectricalExcitedSynchronousInductionMachine with rectifier |
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Modelica.Magnetic.FundamentalWave.Examples.BasicMachines Test example: ElectricalExcitedSynchronousInductionMachine with voltage controller |
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Modelica.Magnetic.FundamentalWave.Examples.BasicMachines Electrical excited synchronous machine operating as generator |
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Modelica.Magnetic.FundamentalWave.Examples.BasicMachines Electrical excited multi phase synchronous machine operating as generator |
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Modelica.Magnetic.FundamentalWave.Examples.BasicMachines ElectricalExcitedSynchronousInductionMachine starting direct on line |
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Modelica.Magnetic.FundamentalWave.Examples.BasicMachines Test example: PermanentMagnetSynchronousInductionMachine acting as brake |
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Modelica.Magnetic.FundamentalWave.Examples.BasicMachines Test example: PermanentMagnetSynchronousInductionMachine fed by FOC |
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Modelica.Magnetic.FundamentalWave.Examples.BasicMachines Test example: PermanentMagnetSynchronousInductionMachine fed by current source |
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Modelica.Magnetic.FundamentalWave.Examples.BasicMachines Starting of multi phase permanent magnet synchronous machine with inverter |
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Modelica.Magnetic.FundamentalWave.Examples.BasicMachines Starting of permanent magnet synchronous machine with inverter |
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Modelica.Magnetic.FundamentalWave.Examples.BasicMachines Starting of multi phase asynchronous induction machine with slip rings |
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Modelica.Magnetic.FundamentalWave.Examples.BasicMachines Starting of asynchronous induction machine with slip rings |
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Modelica.Magnetic.FundamentalWave.Examples.BasicMachines Steady-state initialization of asynchronous induction machine with squirrel cage |
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Modelica.Magnetic.FundamentalWave.Examples.BasicMachines Asynchronous induction machine with squirrel cage and losses |
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Modelica.Magnetic.FundamentalWave.Examples.BasicMachines Asynchronous induction machine with squirrel cage and Steinmetz-connection |
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Modelica.Magnetic.FundamentalWave.Examples.BasicMachines Asynchronous induction machine with squirrel cage and inverter driving a conveyor |
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Modelica.Magnetic.FundamentalWave.Examples.BasicMachines Asynchronous induction machine with squirrel cage and inverter |
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Modelica.Magnetic.FundamentalWave.Examples.BasicMachines Asynchronous induction machine with squirrel cage starting with transformer |
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Modelica.Magnetic.FundamentalWave.Examples.BasicMachines Asynchronous induction machine with squirrel cage starting Y-D |
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Modelica.Magnetic.FundamentalWave.Examples.BasicMachines Direct on line start of multi phase asynchronous induction machine with squirrel cage |
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Modelica.Magnetic.FundamentalWave.Examples.BasicMachines Direct on line (DOL) start of asynchronous induction machine with squirrel cage |
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Modelica.Magnetic.FundamentalWave.Examples.Components Multi phase inductance |
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Modelica.Magnetic.FundamentalWave.Examples.Components Single phase inductance |
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Modelica.Magnetic.FundamentalWave.Examples.Components Comparison of equivalent circuits of eddy current loss models |
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ThreePhaseTransformerWithRectifier Modelica.Magnetic.FluxTubes.Examples.Hysteresis 3 Phase transformer (including hysteresis effect) with rectifier |
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SinglePhaseTransformerWithHysteresis2 Modelica.Magnetic.FluxTubes.Examples.Hysteresis |
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SinglePhaseTransformerWithHysteresis1 Modelica.Magnetic.FluxTubes.Examples.Hysteresis |
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Modelica.Magnetic.FluxTubes.Examples.Hysteresis |
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Modelica.Magnetic.FluxTubes.Examples.Hysteresis Comparison of the different hysteresis models |
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Modelica.Magnetic.FluxTubes.Examples.SolenoidActuator Pull-in stroke of both solenoid models after a voltage step at time t=0 |
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Modelica.Magnetic.FluxTubes.Examples.SolenoidActuator Slow forced armature motion of both solenoid models so that electromagnetic field and current are quasi-stationary |
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Modelica.Magnetic.FluxTubes.Examples.MovingCoilActuator Armature stroke of both moving coil actuator models after a voltage step at time t=0 |
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Modelica.Magnetic.FluxTubes.Examples.MovingCoilActuator Force-stroke characteristic of the permeance model at constant current |
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Modelica.Magnetic.FluxTubes.Examples.MovingCoilActuator Comparison of the force-current characteristics of both converter models with armature blocked at mid-position |
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Modelica.Magnetic.FluxTubes.Examples Inductor with saturation in the ferromagnetic core |
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Spice3BenchmarkFourBitBinaryAdder Modelica.Electrical.Spice3.Examples ADDER - 4 BIT ALL-NAND-GATE BINARY ADDER |
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Modelica.Electrical.Spice3.Examples Simple RTL inverter |
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Spice3BenchmarkMosfetCharacterization Modelica.Electrical.Spice3.Examples Mos output characteristics |
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Spice3BenchmarkDifferentialPair Modelica.Electrical.Spice3.Examples Simple differential pair |
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Modelica.Electrical.Spice3.Examples |
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Modelica.Electrical.Spice3.Examples |
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Modelica.Electrical.Spice3.Examples Oscillator circuit |
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Modelica.Electrical.Spice3.Examples Graetz rectifier circuit |
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Modelica.Electrical.Spice3.Examples MOS NOR gate circuit |
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Modelica.Electrical.Spice3.Examples MOS Nand gate circuit |
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Modelica.Electrical.Spice3.Examples Four inverters with MOSFET level 1, using private record as model card |
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Modelica.Electrical.Spice3.Examples Two inverters with MOS models defined by inheritance |
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Modelica.Electrical.Spice3.Examples Two inverters where transistor models use different modelcard instances |
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Modelica.Electrical.Spice3.Examples Simple inverter circuit |
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Modelica.Electrical.QuasiStationary.MultiPhase.Examples |
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Modelica.Electrical.QuasiStationary.MultiPhase.Examples Unsymmetrical threephase load |
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Modelica.Electrical.QuasiStationary.MultiPhase.Examples Balancing an unsymmetrical delta-connected load |
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Modelica.Electrical.QuasiStationary.MultiPhase.Examples Balancing an unsymmetrical star-connected load |
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Modelica.Electrical.QuasiStationary.Machines.Examples Transformer test bench |
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Modelica.Electrical.QuasiStationary.SinglePhase.Examples Example of transformer with short circuit impedance, transmission resistances and load |
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Modelica.Electrical.QuasiStationary.SinglePhase.Examples Rectifier example |
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Modelica.Electrical.QuasiStationary.SinglePhase.Examples Parallel resonance circuit |
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Modelica.Electrical.QuasiStationary.SinglePhase.Examples Series resonance circuit |
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Modelica.Electrical.QuasiStationary.SinglePhase.Examples Series circuit with Bode analysis |
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Modelica.Electrical.PowerConverters.Examples.DCDC.HBridge H bridge DC/DC converter with DC drive |
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Modelica.Electrical.PowerConverters.Examples.DCDC.HBridge H bridge DC/DC converter with R-L load |
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Modelica.Electrical.PowerConverters.Examples.DCDC.HBridge H bridge DC/DC converter with resistive load |
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Modelica.Electrical.PowerConverters.Examples.DCDC.ChopperStepUp Step up chopper with resistive load |
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Modelica.Electrical.PowerConverters.Examples.DCDC.ChopperStepDown Step down chopper with R-L load |
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Modelica.Electrical.PowerConverters.Examples.DCDC.ChopperStepDown Step down chopper with resistive load |
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Modelica.Electrical.PowerConverters.Examples.DCAC.MultiPhaseTwoLevel Test of pulse width modulation methods |
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Modelica.Electrical.PowerConverters.Examples.DCAC.MultiPhaseTwoLevel Multi phase DC to AC converter with R-L load |
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Modelica.Electrical.PowerConverters.Examples.DCAC.MultiPhaseTwoLevel Multi phase DC to AC converter with R load |
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Modelica.Electrical.PowerConverters.Examples.DCAC.SinglePhaseTwoLevel Single phase DC to AC converter with R-L load |
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Modelica.Electrical.PowerConverters.Examples.DCAC.SinglePhaseTwoLevel Single phase DC to AC converter with resistive load |
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ThyristorCenterTap2mPulse_RLV_Characteristic Modelica.Electrical.PowerConverters.Examples.ACDC.RectifierCenterTap2mPulse Characteristic of 2*m pulse center tap thyristor rectifier with R-L load and voltage |
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Modelica.Electrical.PowerConverters.Examples.ACDC.RectifierCenterTap2mPulse 2*m pulse thyristor center tap rectifier with R-L load and voltage |
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Modelica.Electrical.PowerConverters.Examples.ACDC.RectifierCenterTap2mPulse 2*m pulse thyristor rectifier with R-L load |
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Modelica.Electrical.PowerConverters.Examples.ACDC.RectifierCenterTap2mPulse 2*m pulse thyristor center tap rectifier with resistive load |
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Modelica.Electrical.PowerConverters.Examples.ACDC.RectifierCenterTap2mPulse 2*m pulse diode center tap rectifier with resistive load |
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ThyristorBridge2mPulse_DC_Drive Modelica.Electrical.PowerConverters.Examples.ACDC.RectifierBridge2mPulse 2*m pulse thyristor bridge feeding a DC drive |
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ThyristorBridge2mPulse_RLV_Characteristic Modelica.Electrical.PowerConverters.Examples.ACDC.RectifierBridge2mPulse Characteristic of 2*m pulse thyristor rectifier bridge with R-L load and voltage |
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Modelica.Electrical.PowerConverters.Examples.ACDC.RectifierBridge2mPulse 2*m pulse thyristor rectifier bridge with R-L load and voltage |
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Modelica.Electrical.PowerConverters.Examples.ACDC.RectifierBridge2mPulse 2*m pulse thyristor rectifier bridge with R-L load |
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Modelica.Electrical.PowerConverters.Examples.ACDC.RectifierBridge2mPulse 2*m pulse thyristor rectifier bridge with resistive load |
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Modelica.Electrical.PowerConverters.Examples.ACDC.RectifierBridge2mPulse 2*m pulse half controlled rectifier bridge with resistive load |
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Modelica.Electrical.PowerConverters.Examples.ACDC.RectifierBridge2mPulse 2*m pulse diode rectifier bridge with resistive load |
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ThyristorCenterTapmPulse_RLV_Characteristic Modelica.Electrical.PowerConverters.Examples.ACDC.RectifierCenterTapmPulse Characteristic of 2*m pulse thyristor rectifier with center tap and R-L load and voltage |
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Modelica.Electrical.PowerConverters.Examples.ACDC.RectifierCenterTapmPulse 2*m pulse thyristor rectifier with center tap and R-L load and voltage |
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Modelica.Electrical.PowerConverters.Examples.ACDC.RectifierCenterTapmPulse 2*m pulse thyristor rectifier with center tap and R-L load |
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Modelica.Electrical.PowerConverters.Examples.ACDC.RectifierCenterTapmPulse 2*m pulse thyristor rectifier with center tap and resistive load |
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Modelica.Electrical.PowerConverters.Examples.ACDC.RectifierCenterTapmPulse 2*m pulse diode rectifier with center tap with resistive load |
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ThyristorCenterTap2Pulse_RLV_Characteristic Modelica.Electrical.PowerConverters.Examples.ACDC.RectifierCenterTap2Pulse Characteristic of two pulse thyristor rectifier with center tap and R-L load and voltage |
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Modelica.Electrical.PowerConverters.Examples.ACDC.RectifierCenterTap2Pulse Two pulse thyristor rectifier with center tap and R-L load and voltage |
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Modelica.Electrical.PowerConverters.Examples.ACDC.RectifierCenterTap2Pulse Two pulse thyristor rectifier with center tap and R-L load |
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Modelica.Electrical.PowerConverters.Examples.ACDC.RectifierCenterTap2Pulse Two pulse thyristor rectifier with center tap and resistive load |
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Modelica.Electrical.PowerConverters.Examples.ACDC.RectifierCenterTap2Pulse Two pulse diode rectifier with center tap with resistive load |
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ThyristorBridge2Pulse_DC_Drive Modelica.Electrical.PowerConverters.Examples.ACDC.RectifierBridge2Pulse Two pulse Graetz thyristor bridge feeding a DC drive |
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ThyristorBridge2Pulse_RLV_Characteristic Modelica.Electrical.PowerConverters.Examples.ACDC.RectifierBridge2Pulse Characteristic of two pulse Graetz thyristor bridge rectifier with R-L load and voltage |
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Modelica.Electrical.PowerConverters.Examples.ACDC.RectifierBridge2Pulse Two pulse Graetz thyristor bridge rectifier with R-L load and voltage |
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Modelica.Electrical.PowerConverters.Examples.ACDC.RectifierBridge2Pulse Two pulse Graetz thyristor bridge rectifier with R-L load |
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Modelica.Electrical.PowerConverters.Examples.ACDC.RectifierBridge2Pulse Two pulse Graetz thyristor bridge rectifier with resistive load |
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Modelica.Electrical.PowerConverters.Examples.ACDC.RectifierBridge2Pulse Two pulse Graetz half controlled bridge with resistive load |
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Modelica.Electrical.PowerConverters.Examples.ACDC.RectifierBridge2Pulse Two pulse Graetz diode bridge with resistive load |
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Thyristor1Pulse_R_Characteristic Modelica.Electrical.PowerConverters.Examples.ACDC.Rectifier1Pulse Control characteristic of one pulse rectifier with resistive load |
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Modelica.Electrical.PowerConverters.Examples.ACDC.Rectifier1Pulse One pulse rectifier with resistive load and constant firing angle |
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Modelica.Electrical.MultiPhase.Examples |
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Modelica.Electrical.MultiPhase.Examples Test example with multiphase components |
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Modelica.Electrical.MultiPhase.Examples Test example with multiphase components |
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Modelica.Electrical.MultiPhase.Examples Test example with multiphase components |
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Modelica.Electrical.Machines.Examples.Transformers 6-pulse rectifier with 1 transformer |
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Modelica.Electrical.Machines.Examples.Transformers Asymmetrical load |
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Modelica.Electrical.Machines.Examples.Transformers Transformer test bench |
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Modelica.Electrical.Machines.Examples.ControlledDCDrives.Utilities Partial controlled DC PM drive with H-bridge from battery |
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Modelica.Electrical.Machines.Examples.DCMachines Test example: Investigate influence of losses on DCPM motor performance |
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Modelica.Electrical.Machines.Examples.DCMachines Test example: Compare DCPM motors transient - quasistationary |
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Modelica.Electrical.Machines.Examples.DCMachines Test example: Cooling of a DCPM motor |
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Modelica.Electrical.Machines.Examples.DCMachines Test example: Investigate temperature dependency of a DCPM motor |
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Modelica.Electrical.Machines.Examples.DCMachines Test example: DC with serial excitation starting with voltage ramp |
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Modelica.Electrical.Machines.Examples.DCMachines Test example: DC with serial excitation starting with voltage ramp |
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Modelica.Electrical.Machines.Examples.DCMachines Test example: DC with electrical excitation starting with voltage ramp |
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Modelica.Electrical.Machines.Examples.DCMachines Test example: DC with permanent magnet starting with current controller |
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Modelica.Electrical.Machines.Examples.DCMachines Test example: DC with permanent magnet starting with voltage ramp |
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Modelica.Electrical.Machines.Examples.SynchronousInductionMachines Test example: ElectricalExcitedSynchronousInductionMachine with rectifier |
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Modelica.Electrical.Machines.Examples.SynchronousInductionMachines Test example: ElectricalExcitedSynchronousInductionMachine with voltage controller |
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Modelica.Electrical.Machines.Examples.SynchronousInductionMachines Test example: ElectricalExcitedSynchronousInductionMachine as Generator |
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Modelica.Electrical.Machines.Examples.SynchronousInductionMachines Test example: ElectricalExcitedSynchronousInductionMachine starting direct on line |
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Modelica.Electrical.Machines.Examples.SynchronousInductionMachines Test example: PermanentMagnetSynchronousInductionMachine acting as brake |
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Modelica.Electrical.Machines.Examples.SynchronousInductionMachines Test example: PermanentMagnetSynchronousInductionMachine fed by FOC |
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Modelica.Electrical.Machines.Examples.SynchronousInductionMachines Test example: PermanentMagnetSynchronousInductionMachine fed by current source |
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Modelica.Electrical.Machines.Examples.SynchronousInductionMachines Test example: PermanentMagnetSynchronousInductionMachine with inverter |
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Modelica.Electrical.Machines.Examples.SynchronousInductionMachines SMPM at no-load |
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Modelica.Electrical.Machines.Examples.SynchronousInductionMachines Test example: SynchronousInductionMachineReluctanceRotor with inverter |
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Modelica.Electrical.Machines.Examples.SynchronousInductionMachines Test example: SynchronousInductionMachineReluctanceRotor direct-on-line |
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Modelica.Electrical.Machines.Examples.AsynchronousInductionMachines Test example: Steady-State Initialization of AsynchronousInductionMachineSquirrelCage |
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Modelica.Electrical.Machines.Examples.AsynchronousInductionMachines Test example: AsynchronousInductionMachineSquirrelCage with losses |
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Modelica.Electrical.Machines.Examples.AsynchronousInductionMachines AsynchronousInductionMachineSquirrelCage Steinmetz-connection |
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Modelica.Electrical.Machines.Examples.AsynchronousInductionMachines Test example: AsynchronousInductionMachineSquirrelCage inverter drive |
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Modelica.Electrical.Machines.Examples.AsynchronousInductionMachines Test example: AsynchronousInductionMachineSquirrelCage with inverter driving a conveyor |
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Modelica.Electrical.Machines.Examples.AsynchronousInductionMachines Test example: AsynchronousInductionMachineSquirrelCage with inverter |
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Modelica.Electrical.Machines.Examples.AsynchronousInductionMachines Test example: AsynchronousInductionMachineSlipRing |
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Modelica.Electrical.Machines.Examples.AsynchronousInductionMachines Test example: AsynchronousInductionMachineSquirrelCage transformer starting |
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Modelica.Electrical.Machines.Examples.AsynchronousInductionMachines Test example: AsynchronousInductionMachineSquirrelCage Y-D |
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Modelica.Electrical.Machines.Examples.AsynchronousInductionMachines Test example: AsynchronousInductionMachineSquirrelCage direct-on-line |
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Modelica.Electrical.Digital.Examples Simple RAM test example |
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Modelica.Electrical.Digital.Examples Simple Multiplexer test |
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Modelica.Electrical.Digital.Examples Functionality test of WiredX |
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Modelica.Electrical.Digital.Examples Functionality test of INV3S |
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Modelica.Electrical.Digital.Examples Functionality test of BUF3S |
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Modelica.Electrical.Digital.Examples Functionality test of NRXFERGATE |
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Modelica.Electrical.Digital.Examples Functionality test of NXFERGATE |
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Modelica.Electrical.Digital.Examples Level sensitive D-Register-Bank, low active set and reset |
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Modelica.Electrical.Digital.Examples Level sensitive D-Register-Bank, high active set and reset |
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Modelica.Electrical.Digital.Examples Level sensitive D-Register-Bank, low active reset |
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Modelica.Electrical.Digital.Examples Level sensitive D-Register-Bank, high active reset |
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Modelica.Electrical.Digital.Examples Pulse triggered D-Register-Bank, low active set and reset |
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Modelica.Electrical.Digital.Examples Pulse triggered D-Register-Bank, high active set and reset |
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Modelica.Electrical.Digital.Examples Pulse triggered D-Register-Bank, low active reset |
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Modelica.Electrical.Digital.Examples Pulse triggered D-Register-Bank, high active reset |
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Modelica.Electrical.Digital.Examples Vector delay |
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Modelica.Electrical.Digital.Examples Generic N Bit Counter Example |
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Modelica.Electrical.Digital.Examples 3 Bit Counter Example |
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Modelica.Electrical.Digital.Examples 4 Bit Adder Example |
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Modelica.Electrical.Digital.Examples Full 1 Bit Adder Example |
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Modelica.Electrical.Digital.Examples Adding circuit for binary numbers without input carry bit |
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Modelica.Electrical.Digital.Examples Pulse Triggered Master Slave Flip-Flop |
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Modelica.Electrical.Digital.Examples 4 to 1 Bit Multiplexer Example |
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Modelica.Electrical.Analog.Examples.OpAmps LC oscillator |
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Modelica.Electrical.Analog.Examples.OpAmps Rectangle-Triangle generator |
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Modelica.Electrical.Analog.Examples.OpAmps Multivibrator with Schmitt trigger |
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Modelica.Electrical.Analog.Examples.OpAmps Schmitt trigger with hysteresis |
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Modelica.Electrical.Analog.Examples.OpAmps Inverting Schmitt trigger with hysteresis |
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Modelica.Electrical.Analog.Examples.OpAmps Comparator |
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Modelica.Electrical.Analog.Examples.OpAmps High-pass filter |
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Modelica.Electrical.Analog.Examples.OpAmps Low-pass filter |
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Modelica.Electrical.Analog.Examples.OpAmps Integrating amplifier |
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Modelica.Electrical.Analog.Examples.OpAmps Differentiating amplifier |
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Modelica.Electrical.Analog.Examples.OpAmps Reproduce input voltage |
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Modelica.Electrical.Analog.Examples.OpAmps Non-inverting amplifier |
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Modelica.Electrical.Analog.Examples.OpAmps Inverting amplifier |
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Modelica.Electrical.Analog.Examples Inverting amplifier |
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Modelica.Electrical.Analog.Examples Resonance circuits: example to demonstrate generation of FMUs (Functional Mock-up Units) |
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Modelica.Electrical.Analog.Examples Example to demonstrate variants to generate FMUs (Functional Mock-up Units) |
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Modelica.Electrical.Analog.Examples Conversion circuit |
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Modelica.Electrical.Analog.Examples Ideal triac test circuit |
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Modelica.Electrical.Analog.Examples Simple triac test circuit |
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Modelica.Electrical.Analog.Examples Comparison of controlled switch models both with and without arc |
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Modelica.Electrical.Analog.Examples Transformer circuit to show the magnetization facilities |
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Modelica.Electrical.Analog.Examples Simple Amplifier circuit which uses OpAmpDetailed |
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Modelica.Electrical.Analog.Examples Thyristor demonstration example |
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Modelica.Electrical.Analog.Examples Comparison of switch models both with and without arc |
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Modelica.Electrical.Analog.Examples Simple demo of a VariableResistor model |
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Modelica.Electrical.Analog.Examples Simple demo to show behaviour of SaturatingInductor component |
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Modelica.Electrical.Analog.Examples B6 diode bridge |
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Modelica.Electrical.Analog.Examples Example for Zener diodes |
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Modelica.Electrical.Analog.Examples CMOS NAND Gate (see Tietze/Schenk, page 157) |
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Modelica.Electrical.Analog.Examples Heating rectifier |
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Modelica.Electrical.Analog.Examples Heating resistor |
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Modelica.Electrical.Analog.Examples Heating PNP NOR Gate |
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Modelica.Electrical.Analog.Examples Heating NPN Or Gate |
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Modelica.Electrical.Analog.Examples Heating MOS Inverter |
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Modelica.Electrical.Analog.Examples Simple NPN transistor amplifier circuit |
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Modelica.Electrical.Analog.Examples Chua's circuit, ns, V, A |
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Modelica.Electrical.Analog.Examples Characteristic of ideal thyristors |
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Modelica.Electrical.Analog.Examples Characteristic of ideal diodes |
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Modelica.Electrical.Analog.Examples Cauer low-pass filter with operational amplifiers and switched capacitors |
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Modelica.Electrical.Analog.Examples Cauer low pass filter with operational amplifiers |
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Modelica.Electrical.Analog.Examples Cauer low pass filter with analog components |
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Modelica.StateGraph.Examples Demonstrating the controller of a tank filling/emptying system |
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Modelica.StateGraph.Examples Example to demonstrate how a hierarchically structured StateGraph can suspend and resume actions on different levels |
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Modelica.StateGraph.Examples Example to demonstrate parallel activities described by a StateGraph |
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Modelica.StateGraph.Examples Example to demonstrate parallel and alternative execution paths |
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Modelica.StateGraph.Examples A variant of the first simple StateGraph example |
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Modelica.StateGraph.Examples A variant of the first simple StateGraph example |
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Modelica.StateGraph.Examples A first simple StateGraph example |
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Modelica.ComplexBlocks.Examples Test Complex Transfer Function Block |
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Modelica.ComplexBlocks.Examples Test the conversion blocks |
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Modelica.Blocks.Examples.NoiseExamples Demonstrates how to model wind turbulence for aircraft with the BandLimitedWhiteNoise block (a simple model of vertical Dryden gust speed at low altitudes < 1000 ft) |
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Modelica.Blocks.Examples.NoiseExamples Demonstrates how to model measurement noise in an actuator |
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Modelica.Blocks.Examples.NoiseExamples Demonstrates the usage of the impure random number generator |
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Modelica.Blocks.Examples.NoiseExamples Demonstrates how to compute distribution densities (= Probability Density Function) |
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Modelica.Blocks.Examples.NoiseExamples Demonstrates the computation of properties for normally distributed noise |
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Modelica.Blocks.Examples.NoiseExamples Demonstrates the computation of properties for uniformally distributed noise |
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Modelica.Blocks.Examples.NoiseExamples Demonstrates noise with different types of distributions |
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Modelica.Blocks.Examples.NoiseExamples Demonstrates noise with startTime and automatic local seed for UniformNoise |
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Modelica.Blocks.Examples.NoiseExamples Demonstrates the most simple usage of the UniformNoise block |
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Modelica.Blocks.Examples Calculation of total harmonic distortion of voltage |
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Modelica.Blocks.Examples Demonstrates the usage of a signal bus |
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Modelica.Blocks.Examples Demonstrates the usage of blocks from Modelica.Blocks.Interaction.Show |
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Modelica.Blocks.Examples Demonstrates the usage of blocks from Modelica.Blocks.MathBoolean |
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Modelica.Blocks.Examples Demonstrates the usage of blocks from Modelica.Blocks.MathInteger |
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Modelica.Blocks.Examples Demonstrates the usage of blocks from Modelica.Blocks.Math |
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Modelica.Blocks.Examples Demonstrates the usage of logical blocks |
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Modelica.Blocks.Examples Demonstrates the usage of logical sources together with their diagram animation |
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Modelica.Blocks.Examples Demonstrates the construction of an inverse model |
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Modelica.Blocks.Examples Demonstrate usage of Nonlinear.SlewRateLimiter |
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Modelica.Blocks.Examples Demonstrates to use the rise time instead of the cut-off frequency to define a filter |
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Modelica.Blocks.Examples Demonstrates the use of low pass filters to determine derivatives of filters |
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Modelica.Blocks.Examples Demonstrates the Continuous.Filter block with various options |
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Modelica.Blocks.Examples Demonstrates the usage of a Continuous.LimPID controller |