Research

How to cite TransiEnt

If you want to cite the TransiEnt Library, please use the following reference:

Status of the TransiEnt Library: transient simulation of complex integrated energy systems - Conference Paper; Senkel, Anne; Bode, Carsten; Heckel, Jan-Peter; Schülting, Oliver; Schmitz, Gerhard; Becker, Christian; Kather, Alfons; 14th Modelica Conference (2021)

References

References of TransiEnt-Library

List of important references of TransiEnt-Library

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Final reports of projects that use TransiEnt

Final Reports

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PhD thesis
[190561]
Title: Regelung in Energienetzen mit Kraft-Wärme-Kopplung zur hohen Ausnutzung erneuerbarer Energien.
Written by: Dubucq, Pascal
in: (2018).
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DOI: 10.15480/882.1536
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Abstract: Die verst{\"a}rkte Nutzung von erneuerbaren Energien erfordert eine Flexibilisierung des elektrischen Energiesystems. In der Arbeit wird durch eine Kombination von linearer Optimierung und Systemsimulation untersucht, welche Ma{\ss}nahmen die Netzstabilit{\"a}t und die Ausnutzung der erneuerbaren Energien verbessern k{\"o}nnen. Es zeigt sich, dass Energiespeicher, Verbrauchersteuerung und ein angepasster Einsatz von Anlagen in Kraft-W{\"a}rme-Kopplung dazu geeignet sind. Bei der Regelung und Steuerung m{\"u}ssen die Wechselwirkungen zwischen Erzeugereinsatz, teilweise gesteuertem Verbrauch und Wirkleistungs-Frequenz-Regelung ber{\"u}cksichtigt werden. Dies wird durch das entwickelte Simulationsverfahren erm{\"o}glicht. Growing shares of intermittent renewable energy sources in power systems lead to temporal imbalances between supply and demand. In this thesis several measures to improve the power system stability and integration of renewable energies are investigated using a combination of linear optimization and system simulation. The results show that energy storages, demand response and flexible cogeneration concepts are suitable for this. Furthermore, the investigation of these measures requires a simulation approach that takes into account the interactions between the supply and demand as well as power system stability, which can be achieved by the developed simulation procedure.