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Disruptive demand side technologies: Market shares and impact on flexibility in a decentralized world

: Heitel, Stephanie; Klingler, Anna-Lena; Herbst, Andrea; Fermi, Francesca

Volltext urn:nbn:de:0011-n-6307040 (562 KByte PDF)
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Erstellt am: 6.3.2021

Möst, Dominik (Ed.); Schreiber, Steffi (Ed.); Herbst, Andrea (Ed.); Jakob, Martin (Ed.); Martino, Angelo (Ed.); Poganietz, Witold-Roger (Ed.):
The future European energy system : Renewable energy, flexibility options and technological progress
Cham: Springer Nature, 2021
ISBN: 978-3-030-60913-9
ISBN: 978-3-030-60914-6
ISBN: 978-3-030-60916-0
DOI: 10.1007/978-3-030-60914-6
Aufsatz in Buch, Elektronische Publikation
Fraunhofer ISI ()
Fraunhofer IAO ()

Electricity demand is expected to increase strongly as electrification and the use of hydrogen are promising decarbonization options for the demand side sectors transport and industry. In a decentralized system with volatile renewable energy sources, flexibility potentials will play an important role for secure and cost-efficient electricity supply. On the demand side, decentralized PV-battery systems and electric vehicles as well as hydrogen production by electrolyzers could provide the necessary flexibility. Energy demand over time is calculated based on assumed and simulated market shares of these and other low-emission technologies. Impacts on the system and residual load are analyzed, with a focus on the contribution of load shifting as a demand-side measure. Results indicate that load shifting can contribute significantly to integrate RES electricity.