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The role of regulation for sustainable infrastructure innovations: the case of wind energy

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  • Rainer Walz

Abstract

Regulation is especially important for infrastructure systems (such as wind energy), which are characterised by a triple regulation challenge in the areas of R&D spillovers, environmental protection, and access to monopolistic bottlenecks. A heterodox approach is used to study the effects of regulation, which starts from a system of innovation and distinguishes different innovation functions. These functions are used as a bridge to incorporate the various paradigms of the effects of environmental and natural monopoly regulation explicitly into the analysis. Case studies for Germany and the USA show that despite an early start, the US innovation system has not worked sufficiently until now. In contrast, regulations in Germany provided for a high functionality of the innovation system wind power, which enabled Germany to catch up internationally. The importance of instrument design highlights that the analysis of the interaction between regulation and innovation must be performed on a rather detailed level.

Suggested Citation

  • Rainer Walz, 2007. "The role of regulation for sustainable infrastructure innovations: the case of wind energy," International Journal of Public Policy, Inderscience Enterprises Ltd, vol. 2(1/2), pages 57-88.
  • Handle: RePEc:ids:ijpubp:v:2:y:2007:i:1/2:p:57-88
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    Citations

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    Cited by:

    1. Negro, Simona O. & Alkemade, Floortje & Hekkert, Marko P., 2012. "Why does renewable energy diffuse so slowly? A review of innovation system problems," Renewable and Sustainable Energy Reviews, Elsevier, vol. 16(6), pages 3836-3846.
    2. Dumas, Marion & Rising, James & Urpelainen, Johannes, 2016. "Political competition and renewable energy transitions over long time horizons: A dynamic approach," Ecological Economics, Elsevier, vol. 124(C), pages 175-184.
    3. Sebastian Losacker & Hendrik Hansmeier & Jens Horbach & Ingo Liefner, 2023. "The geography of environmental innovation: a critical review and agenda for future research," Review of Regional Research: Jahrbuch für Regionalwissenschaft, Springer;Gesellschaft für Regionalforschung (GfR), vol. 43(2), pages 291-316, August.
    4. Walz, Rainer & Köhler, Jonathan Hugh & Lerch, Christian, 2016. "Towards modelling of innovation systems: An integrated TIS-MLP approach for wind turbines," Discussion Papers "Innovation Systems and Policy Analysis" 50, Fraunhofer Institute for Systems and Innovation Research (ISI).
    5. Bin Xue & Bingsheng Liu & Tao Liang & Dong Zhao & Tao Wang & Xingbin Chen, 2022. "A heterogeneous decision criteria system evaluating sustainable infrastructure development: From the lens of multidisciplinary stakeholder engagement," Sustainable Development, John Wiley & Sons, Ltd., vol. 30(4), pages 556-579, August.
    6. Chung, Sung H. & Weaver, Robert D. & Friesz, Terry L., 2013. "Strategic response to pollution taxes in supply chain networks: Dynamic, spatial, and organizational dimensions," European Journal of Operational Research, Elsevier, vol. 231(2), pages 314-327.
    7. Rasmus Lema & Björn Johnson & Allan Dahl Andersen & Bengt-Åke Lundvall & Ankur Chaudhary (ed.), 2014. "Low-Carbon Innovation and Development," Globelics Thematic Reviews, Globelics - Global Network for Economics of Learning, Innovation, and Competence Building Systems, Aalborg University, Department of Business and Management, number low-carbon, September.
    8. Rogge, Karoline S. & Hoffmann, Volker H., 2009. "The impact of the EU ETS on the sectoral innovation system for power generation technologies: findings for Germany," Working Papers "Sustainability and Innovation" S2/2009, Fraunhofer Institute for Systems and Innovation Research (ISI).
    9. Mario Ragwitz & Simone Steinhilber, 2014. "Effectiveness and efficiency of support schemes for electricity from renewable energy sources," Wiley Interdisciplinary Reviews: Energy and Environment, Wiley Blackwell, vol. 3(2), pages 213-229, March.
    10. Rainer Walz & Matthias Pfaff & Frank Marscheider-Weidemann & Simon Glöser-Chahoud, 2017. "Innovations for reaching the green sustainable development goals –where will they come from?," International Economics and Economic Policy, Springer, vol. 14(3), pages 449-480, July.
    11. Herman, Kyle S. & Xiang, Jun, 2019. "Induced innovation in clean energy technologies from foreign environmental policy stringency?," Technological Forecasting and Social Change, Elsevier, vol. 147(C), pages 198-207.
    12. Losacker, Sebastian & Hansmeier, Hendrik & Horbach, Jens & Liefner, Ingo, 2021. "The geography of environmental innovation: A critical review and agenda for future research," Papers in Innovation Studies 2021/15, Lund University, CIRCLE - Centre for Innovation Research.
    13. Kelly Levin & Benjamin Cashore & Steven Bernstein & Graeme Auld, 2012. "Overcoming the tragedy of super wicked problems: constraining our future selves to ameliorate global climate change," Policy Sciences, Springer;Society of Policy Sciences, vol. 45(2), pages 123-152, June.
    14. Walz, Rainer & Helfrich, Nicki & Enzmann, Alexander, 2009. "A system dynamics approach for modelling a lead-market-based export potential," Working Papers "Sustainability and Innovation" S3/2009, Fraunhofer Institute for Systems and Innovation Research (ISI).
    15. Rogge, Karoline S. & Hoffmann, Volker H., 2010. "The impact of the EU ETS on the sectoral innovation system for power generation technologies - Findings for Germany," Energy Policy, Elsevier, vol. 38(12), pages 7639-7652, December.
    16. Musiolik, Jörg & Markard, Jochen, 2011. "Creating and shaping innovation systems: Formal networks in the innovation system for stationary fuel cells in Germany," Energy Policy, Elsevier, vol. 39(4), pages 1909-1922, April.
    17. Rainer Walz & Wolfgang Eichhammer, 2012. "Benchmarking green innovation," Mineral Economics, Springer;Raw Materials Group (RMG);Luleå University of Technology, vol. 24(2), pages 79-101, June.

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