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Model-based evaluation of decentralised electricity markets at different phases of the German energy transition

Author

Listed:
  • Ritter, David
  • Heinemann, Christoph
  • Bauknecht, Dierk
  • Winger, Christian
  • Flachsbarth, Franziska

Abstract

This paper investigates decentralised markets in the German electricity system, defined as markets in specific regions in which regional electricity demand is met primarily by regional generation and the remaining demand is met on a system-wide level in a second step. The research question is: What impact do the size of decentralised markets and the type of authorised participants have in different levels of the energy transition? The results show that the greatest effects from decentralised markets are caused by an increased usage of gas-fired power plants, as they are the major dispatchable generators in the future electricity system, resulting in significantly higher CO2 emissions and electricity generation costs, but also higher local self-supply rates. With very high RES-E shares the results hardly differ between the reference case and decentralised market models. The size of decentralised markets has a lower impact than limited access for certain fuel types or generation capacity size. Although decentralised markets can reduce the load on the grid, the need for grid expansion does not decrease. Overall, we conclude that from a system perspective decentralised markets can lead to negative effects if they are not regulated appropriately, especially during the transformation phase of the electricity system.

Suggested Citation

  • Ritter, David & Heinemann, Christoph & Bauknecht, Dierk & Winger, Christian & Flachsbarth, Franziska, 2021. "Model-based evaluation of decentralised electricity markets at different phases of the German energy transition," EconStor Preprints 234104, ZBW - Leibniz Information Centre for Economics.
  • Handle: RePEc:zbw:esprep:234104
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    References listed on IDEAS

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    1. Weert Canzler & Ludger Gailing & Philipp Grundmann & Wolf-Peter Schill & Dirk Uhrlandt & Tilmann Rave, 2016. "Auf dem Weg zum (de-)zentralen Energiesystem? Ein interdisziplinärer Beitrag zu wesentlichen Debatten," Vierteljahrshefte zur Wirtschaftsforschung / Quarterly Journal of Economic Research, DIW Berlin, German Institute for Economic Research, vol. 85(4), pages 127-159.
    2. Mengelkamp, Esther & Schönland, Thomas & Huber, Julian & Weinhardt, Christof, 2019. "The value of local electricity - A choice experiment among German residential customers," Energy Policy, Elsevier, vol. 130(C), pages 294-303.
    3. Child, Michael & Kemfert, Claudia & Bogdanov, Dmitrii & Breyer, Christian, 2019. "Flexible electricity generation, grid exchange and storage for the transition to a 100% renewable energy system in Europe," EconStor Open Access Articles and Book Chapters, ZBW - Leibniz Information Centre for Economics, vol. 139, pages 80-101.
    4. Mengelkamp, Esther & Gärttner, Johannes & Rock, Kerstin & Kessler, Scott & Orsini, Lawrence & Weinhardt, Christof, 2018. "Designing microgrid energy markets," Applied Energy, Elsevier, vol. 210(C), pages 870-880.
    5. Schlachtberger, D.P. & Brown, T. & Schramm, S. & Greiner, M., 2017. "The benefits of cooperation in a highly renewable European electricity network," Energy, Elsevier, vol. 134(C), pages 469-481.
    6. Weinand, Jann & Scheller, Fabian Johannes & McKenna, Russell, 2020. "Reviewing energy system modelling of decentralized energy autonomy," Working Paper Series in Production and Energy 41, Karlsruhe Institute of Technology (KIT), Institute for Industrial Production (IIP).
    7. Matthias Kühnbach & Felix Guthoff & Anke Bekk & Ludger Eltrop, 2020. "Development of Scenarios for a Multi-Model System Analysis Based on the Example of a Cellular Energy System," Energies, MDPI, vol. 13(4), pages 1-23, February.
    8. David Ritter & Roland Meyer & Matthias Koch & Markus Haller & Dierk Bauknecht & Christoph Heinemann, 2019. "Effects of a Delayed Expansion of Interconnector Capacities in a High RES-E European Electricity System," Energies, MDPI, vol. 12(16), pages 1-32, August.
    9. Jann Michael Weinand & Fabian Scheller & Russell McKenna, 2020. "Reviewing energy system modelling of decentralized energy autonomy," Papers 2011.05915, arXiv.org.
    10. Weinand, Jann Michael & Scheller, Fabian & McKenna, Russell, 2020. "Reviewing energy system modelling of decentralized energy autonomy," Energy, Elsevier, vol. 203(C).
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    Cited by:

    1. Bucksteeg, Michael & Wiedmann, Michael & Pöstges, Arne & Haller, Markus & Böttger, Diana & Ruhnau, Oliver & Schmitz, Richard, 2022. "The transformation of integrated electricity and heat systems—Assessing mid-term policies using a model comparison approach," Renewable and Sustainable Energy Reviews, Elsevier, vol. 160(C).
    2. Syranidou, Chloi & Koch, Matthias & Matthes, Björn & Winger, Christian & Linßen, Jochen & Rehtanz, Christian & Stolten, Detlef, 2022. "Development of an open framework for a qualitative and quantitative comparison of power system and electricity grid models for Europe," Renewable and Sustainable Energy Reviews, Elsevier, vol. 159(C).
    3. Ruhnau, O. & Bucksteeg, M. & Ritter, D. & Schmitz, R. & Böttger, D. & Koch, M. & Pöstges, A. & Wiedmann, M. & Hirth, L., 2022. "Why electricity market models yield different results: Carbon pricing in a model-comparison experiment," Renewable and Sustainable Energy Reviews, Elsevier, vol. 153(C).

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    More about this item

    Keywords

    decentralised markets; local energy markets; electricity market modelling; renewable integration; energy transition;
    All these keywords.

    JEL classification:

    • C61 - Mathematical and Quantitative Methods - - Mathematical Methods; Programming Models; Mathematical and Simulation Modeling - - - Optimization Techniques; Programming Models; Dynamic Analysis
    • D47 - Microeconomics - - Market Structure, Pricing, and Design - - - Market Design
    • O21 - Economic Development, Innovation, Technological Change, and Growth - - Development Planning and Policy - - - Planning Models; Planning Policy

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