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Free (standard conform) library that is intended to model electrical power systems at different levels of detail both in transient and steady-state mode.

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PowerSystems

The library is intended to model electrical power systems at different levels of detail both in transient and steady-state mode.

Library description

PowerSystems provides a framework and examples for the flexible modeling of electical power systems. Generic component models adapt to different application needs by using a replaceable PhaseSystem. Moreover the library contains the extensive sets of detailed one phase and transient three phase component models of the former SPOT library.

In particular this shall cover systems like:

  • AC power systems, including dc power flow, steady-state, transient, and unsymmetric,
  • Variable frequency systems, e.g. in wind turbines or for drive control, and
  • DC power systems, like HVDC

See also the publication Franke, Wiesmann: Flexible modeling of electrical power systems - the Modelica PowerSystems library, Modelica conference 2014.

Current release

Download PowerSystems v2.0.0 (2024-05-07)

Revisions

  • Version v2.0.0 (2024-05-07)

    • Upgrade used Modelica Standard Library to version 4.0.0 (#50, #51)
  • Version v1.0.1 (2021-06-30)

    • Remove StateSelect.prefer from angular velocity of electrical machines
    • Make semiconductor model in Semiconductors.PhaseModules.SwitchModule replaceable.
    • Fix unit in AC3ph.Impedances.Inductor (#43).
    • Added missing 'each' to AC3ph.Machines.Synchron_pm_ctrl (#44).
    • Small clean-ups
  • Version v1.0.0 (2018-11-12)

    • Added missing 'each'.
    • Enhance sensors with scaling of output signals.
    • Add steady-state AC3ph PQload.
  • Version v0.6.0 (2017-01-18)

    • Enhance AC3ph with replaceable PhaseSystem. Many components work with ThreePhase_dq as well, besides the default ThreePhase_dq0.
    • Introduce own SI sub-package to get appropriate display units.
    • Treat PerCent as display unit, 0..1 internally.
    • Implement inertial reference frame for Generic components (#18).
    • Fix some HTML warnings (#20).
    • Fix measurement units in PWM control models (#21).
    • Make phasor of PVImeter unconditional (#26).
    • Unify naming of start values for Loads.
    • Reorganize Examples to better outline the Introductory examples and to better reflect the three component sub-packages AC3ph, AC1ph_DC and Generic.
  • Version v0.5.0 (2016-09-20)

    This release introduces a couple of changes that improve the modeling experience and unify the library with other Modelica libraries.

    • Introduce replaceable model and record types, instead of replaceable model and record instances.
    • Simplify initialization
      • Introduce enumeration Types.Dynamics dynType, replacing Booleans stIni_en, steadyIni_t and transientSim
      • Unify naming of start parameters from *_ini to *_start
      • Simplify initialization of machine rotors and line models
    • Rework AC3ph and AC1ph_DC line models: rename PIline to Tline and introduce new PIline.
    • Rework tap changers of AC3ph and AC1ph_DC trafo models: treat effect of tap changers in replaceable Topology, enabling more arrangements such as phase angle regulating.
    • Add examples for electrical drive trains of wind turbines
    • Reorganize Basic package to Utilities.
    • Add Inline=true annotations to functions that shall be inlined.
    • Introduce PhaseSystem Voltage and Current types, including nominal values of 1000.
    • Upgrade Phasor model to standard Modelica graphics.
    • Base on Modelica 3.2.2 instead of 3.2.1 (without changing anything).
  • Version v0.4.0 (2015-03-14)

    • fix Generic components to work with simple ThreePhase_d again (was broken in v0.3)
    • rework parameter records (move parameter qualifiers from record members to whole records to permit their construction with functions)
    • remove ambiguous start values
    • lot of clean-up
  • Version v0.3 (2014-10-20)

    • add initial equations to Generic models and related examples
    • add start parameters to AC1phDC and extend transient initialization
    • add start parameters to AC3ph to improve steady-state initialization
    • fix use of condionally declared variables
    • clean up annotations
    • rename dqo to dq0
  • Version v0.2.1 (2014-08-15)

    • replace deprecated classDirectory() with loadResource()
    • fix references to Connections package
  • Version v0.2 (2013-04-18)

    • Clean-up Examples and Resources
  • Version v0.1.3 (2013-02-28)

    • Generic: change connector units from MW to W
  • Version v0.1.2 (2012-12-22)

    • Rework Basic.Types to using SI units
    • Adapt parameter records to SI units
  • Version v0.1.1 (2012-12-15)

    • Rename Utilities package to Basic
    • Remove BasePU and BaseSI sub-packages
  • Version v0.1 (2012-12-06)

    • Initial version

License

Copyright © 2007-2015, Modelica Association.

This Modelica package is free software and the use is completely at your own risk; it can be redistributed and/or modified under the terms of the Modelica License 2.

Development and contribution

Contributors:

  • Hansjürg Wiesmann († 2015): Wrote the original SPOT library and supported the creation of the PowerSystems library.
  • Martin Otter: Converted the original Spot library from Modelica 2 to Modelica 3.
  • Rüdiger Franke: Created the PowerSystems library out of the PowerFlow concept library and the SPOT library.

You may report any issues with using the Issues button.

Contributions in shape of Pull Requests are always welcome.

Acknowledgement

This work was in parts supported by the ITEA2 MODRIO project by funding of BMBF under contract number ITEA 2 - 11004. Work on the predecessor PowerFlow library was in parts supported by the ITEA2 EUROSYSLIB project by funding of BMBF under contract number ITEA 2 - 06020. Work on the predecessor Spot library was in parts supported by the RealSim project by funding of the IST Programme, Contract No. IST-1999-11979.

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Free (standard conform) library that is intended to model electrical power systems at different levels of detail both in transient and steady-state mode.

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