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Grid stability in a 100% renewable electricity supply system

Interactions between a high installed capacity of wind power and the system
 
: Zimmermann, Britta; Knorr, Kaspar; Steinke, Florian; Wolfrum, Philipp; Leveringhaus, Thomas

:
Volltext urn:nbn:de:0011-n-3565230 (1.3 MByte PDF)
MD5 Fingerprint: fc4b8a214007d309a255918c276a82bf
Erstellt am: 3.9.2015


Betancourt, U.:
13th Wind Integration Workshop 2014. Proceedings : International Workshop on Large-Scale Integration of Wind Power into Power Systems as well as on Transmission Networks for Offshore Wind Power Plants, 21 - 13 November 2014, Berlin, Germany
Langen: Energynautics GmbH, 2014
ISBN: 978-3-9813870-9-4
6 S.
Wind Integration Workshop (WIW) <13, 2014, Berlin>
International Workshop on Large-Scale Integration of Wind Power into Power Systems as well as on Transmission Networks for Offshore Wind Power Plants <13, 2014, Berlin>
Englisch
Konferenzbeitrag, Elektronische Publikation
Fraunhofer IWES ()
grid stability; ancillary services; voltage control; frequency control; control reserve; congestion management; spinning reserve; renewable energy

Abstract
The research project Kombikraftwerk 2 examined whether and how a reliable and stable electricity supply for Germany with 100% renewable energy sources can be realized in the future. To this end, an assessment of the demand and the provision of ancillary services in such a system with a highshare of wind energy was undertaken. Besides presenting an overview of the results of the project, this paper discusses the role of wind energy in the system in particular.

: http://publica.fraunhofer.de/dokumente/N-356523.html