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Modelling the interdependencies of storage, DSM and grid-extension for Europe

  • Energy systems with high shares of renewable electricity are feasible, but require balancing measures such as storage, grid exchange or demand-side management to maintain system stability. The demand for these balancing options cannot be assessed separately since they influence each other. Therefore, a model was developed to analyze these mutual dependencies by optimizing a concerted use of balancing technologies. This model is presented here. It covers the European electricity system in hourly resolution. Since this leads to a large optimization problem, several options for reducing system complexity are presented. The application of the model is illustrated with a case study outlining the effects of pumped hydro storage and controlledEnergy systems with high shares of renewable electricity are feasible, but require balancing measures such as storage, grid exchange or demand-side management to maintain system stability. The demand for these balancing options cannot be assessed separately since they influence each other. Therefore, a model was developed to analyze these mutual dependencies by optimizing a concerted use of balancing technologies. This model is presented here. It covers the European electricity system in hourly resolution. Since this leads to a large optimization problem, several options for reducing system complexity are presented. The application of the model is illustrated with a case study outlining the effects of pumped hydro storage and controlled charging of electric vehicles in central Europe.show moreshow less

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Metadaten
Document Type:Conference Object
Author:Christine Krüger, Mathis Buddeke, Frank Merten, Arjuna Nebel
URN (citable link):https://nbn-resolving.org/urn:nbn:de:bsz:wup4-opus-61057
Publisher:Inst. of Electrical and Electronics Engineers
Place of Publication:New York, NY
Year of Publication:2015
Pagenumber:5
Language:English
Source Title (English):12th International Conference on the European energy market (EEM) : 19-22 May 2015, Lisbon
DOI:https://doi.org/10.1109/EEM.2015.7216669
Division:Zukünftige Energie- und Industriesysteme
Dewey Decimal Classification:600 Technik, Medizin, angewandte Wissenschaften
Licence:License LogoIn Copyright - Urheberrechtlich geschützt