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  REMIND-PyPSA-Eur: Integrating power system flexibility into sector-coupled energy transition pathways

Odenweller, A., Ueckerdt, F., Hampp, J., Ramirez, I., Schreyer, F., Hasse, R., Müßel, J., Gong, C. C., Pietzcker, R. C., Brown, T., Luderer, G. (2026): REMIND-PyPSA-Eur: Integrating power system flexibility into sector-coupled energy transition pathways. - Progress in Energy, 8, 2, 025001.
https://doi.org/10.1088/2516-1083/ae3ffe

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Odenweller, Adrian1, 2, Autor                 
Ueckerdt, Falko1, Autor                 
Hampp, Johannes1, Autor           
Ramirez, Ivan1, Autor           
Schreyer, Felix1, Autor                 
Hasse, Robin1, Autor                 
Müßel, Jarusch1, Autor                 
Gong, Chen Chris1, Autor                 
Pietzcker, Robert C.1, Autor                 
Brown , Tom3, Autor
Luderer, Gunnar1, Autor                 
Affiliations:
1Potsdam Institute for Climate Impact Research, ou_persistent13              
2Submitting Corresponding Author, Potsdam Institute for Climate Impact Research, ou_29970              
3External Organizations, ou_persistent22              

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 Zusammenfassung: The rapid expansion of low-cost renewable electricity combined with end-use electrification in transport, industry, and buildings offers a promising path to deep decarbonisation. However, aligning variable supply with demand requires strategies for daily and seasonal balancing. Existing models either lack the wide scope required for long-term transition pathways or the spatio-temporal detail to capture power system variability and flexibility. Here, we combine the complementary strengths of REMIND, a long-term integrated assessment model, and PyPSA-Eur, an hourly energy system model, through a bi-directional, price-based and iterative soft coupling. REMIND provides pathway variables such as sectoral electricity demand, installed capacities, and costs to PyPSA-Eur, which returns optimised operational variables such as capacity factors, storage requirements, and relative prices. After sufficient convergence, this integrated approach jointly optimises long-term investment and short-term operation. We demonstrate the coupling for two Germany-focused scenarios, with and without demand-side flexibility, reaching climate neutrality by 2045. Our results confirm that a sector-coupled energy system with nearly 100% renewable electricity is technically possible and economically viable. Power system flexibility influences long-term pathways through price differentiation: supply-side market values vary by generation technology, while demand-side prices vary by end-use sector. Flexible electrolysers and smart-charging electric vehicles benefit from below-average prices, whereas less flexible heat pumps face almost twice the average price due to winter peak loads. Without demand-side flexibility, electricity prices increase across all end-users, though battery deployment partially compensates. By integrating hourly power system dynamics into multi-decadal energy transition pathways, our approach addresses the fundamental trade-off between the wide scope needed for climate policy analysis and the spatio-temporal detail needed for power system planning.

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Sprache(n): eng - English
 Datum: 2026-01-082025-10-062026-01-302026-01-302026-02-20
 Publikationsstatus: Final veröffentlicht
 Seiten: 25
 Ort, Verlag, Ausgabe: -
 Inhaltsverzeichnis: -
 Art der Begutachtung: Expertenbegutachtung
 Identifikatoren: DOI: 10.1088/2516-1083/ae3ffe
Organisational keyword: RD3 - Transformation Pathways
PIKDOMAIN: RD3 - Transformation Pathways
Organisational keyword: Lab - Energy Transition
Research topic keyword: Energy
Model / method: REMIND
Research topic keyword: Decarbonization
Regional keyword: Germany
Research topic keyword: Mitigation
Model / method: PIAM
MDB-ID: No MDB - stored outside PIK (see locators/paper)
OATYPE: Hybrid Open Access
 Art des Abschluß: -

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Titel: Progress in Energy
Genre der Quelle: Zeitschrift
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Ort, Verlag, Ausgabe: -
Seiten: - Band / Heft: 8 (2) Artikelnummer: 025001 Start- / Endseite: - Identifikator: CoNE: https://publications.pik-potsdam.de/cone/journals/resource/2516-1083
Publisher: IOP Publishing