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Deriving efficient policy portfolios promoting sustainable energy systems—Case studies applying Invert simulation tool

Author

Listed:
  • Kranzl, Lukas
  • Stadler, Michael
  • Huber, Claus
  • Haas, Reinhard
  • Ragwitz, Mario
  • Brakhage, Anselm
  • Gula, Adam
  • Figorski, Arkadiusz

Abstract

Within recent years, energy policies have imposed a number of targets at European and national level for rational use of energy (RUE), renewable energy sources (RES) and related CO2 reductions. As a result, a wide variety of policy instruments is currently implemented and hence the question arises: how can these instruments be designed in a way to reach the maximum policy target with the minimum public money spent?

Suggested Citation

  • Kranzl, Lukas & Stadler, Michael & Huber, Claus & Haas, Reinhard & Ragwitz, Mario & Brakhage, Anselm & Gula, Adam & Figorski, Arkadiusz, 2006. "Deriving efficient policy portfolios promoting sustainable energy systems—Case studies applying Invert simulation tool," Renewable Energy, Elsevier, vol. 31(15), pages 2393-2410.
  • Handle: RePEc:eee:renene:v:31:y:2006:i:15:p:2393-2410
    DOI: 10.1016/j.renene.2005.11.005
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    Citations

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    Cited by:

    1. Henning, Hans-Martin & Palzer, Andreas, 2014. "A comprehensive model for the German electricity and heat sector in a future energy system with a dominant contribution from renewable energy technologies—Part I: Methodology," Renewable and Sustainable Energy Reviews, Elsevier, vol. 30(C), pages 1003-1018.
    2. Marlene O’Sullivan, 2020. "Industrial life cycle: relevance of national markets in the development of new industries for energy technologies – the case of wind energy," Journal of Evolutionary Economics, Springer, vol. 30(4), pages 1063-1107, September.
    3. Lund, P.D., 2009. "Effects of energy policies on industry expansion in renewable energy," Renewable Energy, Elsevier, vol. 34(1), pages 53-64.
    4. Tolón-Becerra, A. & Lastra-Bravo, X. & Bienvenido-Bárcena, F., 2011. "Proposal for territorial distribution of the EU 2020 political renewable energy goal," Renewable Energy, Elsevier, vol. 36(8), pages 2067-2077.
    5. Connolly, D. & Lund, H. & Mathiesen, B.V. & Leahy, M., 2010. "A review of computer tools for analysing the integration of renewable energy into various energy systems," Applied Energy, Elsevier, vol. 87(4), pages 1059-1082, April.
    6. Aldeman, M.R. & Jo, J.H. & Loomis, D.G., 2015. "The technical potential for wind energy in Illinois," Energy, Elsevier, vol. 90(P1), pages 1082-1090.
    7. Prasad, Ravita D. & Bansal, R.C. & Raturi, Atul, 2014. "Multi-faceted energy planning: A review," Renewable and Sustainable Energy Reviews, Elsevier, vol. 38(C), pages 686-699.
    8. Zhuo Xu & Xiaohu Li & Lie Ma & Yuehong Lu & Guo Liu, 2024. "Unraveling the Knowledge Roadmap of Building Policy Mixes: A Scientometric Analysis," Sustainability, MDPI, vol. 16(1), pages 1-23, January.
    9. Kranzl, Lukas & Hummel, Marcus & Müller, Andreas & Steinbach, Jan, 2013. "Renewable heating: Perspectives and the impact of policy instruments," Energy Policy, Elsevier, vol. 59(C), pages 44-58.

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