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A dynamic bandwidth tariff assessment in a Dutch distribution network using a novel scalable distributed simulation framework

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Samenvatting

Due to the increasing penetration of distributed energy resources, congestion problems are already emerging in Dutch distribution grids. The available flexibility of assets in the built environment could have the potential to reduce congestion if prosumers are properly incentivized by distribution grid operators (DSOs). However, it is not yet clear what (combinations of) flexibility a ctivation mechanisms will be effective for congestion management in Dutch Distribution grids. To shed light on this issue, the GO-e consortium aims at performing large-scale agent-based simulations of up to 120 low-voltage networks and a large variety of possible instruments and scenarios. For this reason, we developed a novel scalable time-discrete simulation framework for distributed agent-based simulations of energy systems. We demonstrate the framework on a case-study in which we assess the effectiveness of a dynamic bandwidth tariff instrument on overloading problems in a low-voltage network containing solar panels, batteries, and heat pumps. It was shown that a dynamic bandwidth tariff can successfully resolve forecasted congestion if the associated costs are high enough compared to the day-ahead prices. However, the resulting load shifting can cause new congestion intra-day aswell.
Originele taal-2Engels
TitelA dynamic bandwidth tariff assessment in a Dutch distribution network using a novel scalable distributed simulation framework
UitgeverijInstitution of Engineering and Technology
Hoofdstuk11381
Pagina's3779-3783
Aantal pagina's5
ISBN van elektronische versie978-1-83953-855-1
DOI's
StatusGepubliceerd - 29 sep. 2023
Evenement27th International Conference on Electricity Distribution, CIRED 2023 - Rome, Italië
Duur: 12 jun. 202315 jun. 2023

Publicatie series

NaamIET Conference Proceedings
Nummer6
Volume2023

Congres

Congres27th International Conference on Electricity Distribution, CIRED 2023
Land/RegioItalië
StadRome
Periode12/06/2315/06/23

Financiering

The first two authors contributed equally to this work. The authors would like to thank Phuong Nguyen (Eindhoven University of Technology), Johan Morren (Eindhoven University of Technology/Enexis Groep), and Arun Subramanian (Siemens Gamesa/TNO) for the insightful discussions. We furthermore thank the Netherlands Enterprise Agency for partially funding this research through the GO-e project (MOOI32001).

FinanciersFinanciernummer
Rijksdienst voor Ondernemend Nederland (RVO) - opdrachtgeverMOOI32001
Technische Universiteit Eindhoven

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