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Institutional barriers to the development of small-scale power generation in Russia

Author

Listed:
  • Mikhail V. Kozhevnikov

    (Ural Federal University named after the first President of Russia B. N. Yeltsin, Ekaterinburg, Russia)

  • Artem A. Dvinyaninov

    (Ural Federal University named after the first President of Russia B. N. Yeltsin, Ekaterinburg, Russia)

  • Nikita G. Sapozhnikov

    (Ural Federal University named after the first President of Russia B. N. Yeltsin, Ekaterinburg, Russia)

Abstract

The energy strategy of Russia involves a transition to a diversified energy generation characterised by a structural diversity of plant types, as well as the use of small-scale energy technologies. The purpose of the study is to identify the barriers that hinder the implementation of small-scale power generation in the Russian Federation and justify the avenues for its development. Methodologically, the paper relies on the systems approach. Methods of content and logical structural analysis, in-depth interviews are applied. The empirical evidence comes from analytical reports, normative and legal documents, as well as results of surveys of 96 specialists in the field and heads of power plants and power engineering enterprises conducted during 2021– 2023. The findings indicate there are four groups of problems in the Russian energy system: technological backwardness; difficulties with integration of small-scale power generation facilities into the energy market; absence of state support mechanisms; surplus of power generation capacity. Accordingly, the paper provides recommendations for overcoming them, in particular, it is necessary to introduce mechanisms for the support of small-scale power engineering and integration with engineering and consultancy companies, as well as make use of energy service agreements; second, to introduce standards for connecting small-scale power generation facilities, develop guidelines for designing and commissioning them; third, to amend tax regulations and learn from successful foreign experience; fourth, to replace retired power generation equipment with new small-scale power generation facilities located closer to load centres. The theoretical significance of the research is linked with detailing the concept “small-scale power generation” as a segment of energy sector as well as its structure in relation to the Russian Federation, specifying classification characteristics of low-capacity power units. The findings are practically valuable for government authorities, power generation enterprises and equipment manufacturers due to the developed organisational and methodological guidelines.

Suggested Citation

  • Mikhail V. Kozhevnikov & Artem A. Dvinyaninov & Nikita G. Sapozhnikov, 2024. "Institutional barriers to the development of small-scale power generation in Russia," Journal of New Economy, Ural State University of Economics, vol. 25(1), pages 110-130, April.
  • Handle: RePEc:url:izvest:v:25:y:2024:i:1:p:110-130
    DOI: 10.29141/2658-5081-2024-25-1-6
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    References listed on IDEAS

    as
    1. Mehigan, L. & Deane, J.P. & Gallachóir, B.P.Ó. & Bertsch, V., 2018. "A review of the role of distributed generation (DG) in future electricity systems," Energy, Elsevier, vol. 163(C), pages 822-836.
    2. Pepermans, G. & Driesen, J. & Haeseldonckx, D. & Belmans, R. & D'haeseleer, W., 2005. "Distributed generation: definition, benefits and issues," Energy Policy, Elsevier, vol. 33(6), pages 787-798, April.
    3. Lazar Gitelman & Mikhail Kozhevnikov & Yana Visotskaya, 2023. "Diversification as a Method of Ensuring the Sustainability of Energy Supply within the Energy Transition," Resources, MDPI, vol. 12(2), pages 1-19, February.
    4. Chu Donatus Iweh & Samuel Gyamfi & Emmanuel Tanyi & Eric Effah-Donyina, 2021. "Distributed Generation and Renewable Energy Integration into the Grid: Prerequisites, Push Factors, Practical Options, Issues and Merits," Energies, MDPI, vol. 14(17), pages 1-34, August.
    5. Hu, Jing & Harmsen, Robert & Crijns-Graus, Wina & Worrell, Ernst, 2018. "Barriers to investment in utility-scale variable renewable electricity (VRE) generation projects," Renewable Energy, Elsevier, vol. 121(C), pages 730-744.
    6. Yaqoot, Mohammed & Diwan, Parag & Kandpal, Tara C., 2016. "Review of barriers to the dissemination of decentralized renewable energy systems," Renewable and Sustainable Energy Reviews, Elsevier, vol. 58(C), pages 477-490.
    7. Camilo A. Ramírez Rincón & João Santos & Leentje Volker & Robert Rouwenhorst, 2021. "Identifying Institutional Barriers and Enablers for Sustainable Urban Planning from a Municipal Perspective," Sustainability, MDPI, vol. 13(20), pages 1-24, October.
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    More about this item

    Keywords

    small-scale power generation; institutional barriers; power engineering; decentralised power system; renewable energy sources;
    All these keywords.

    JEL classification:

    • L94 - Industrial Organization - - Industry Studies: Transportation and Utilities - - - Electric Utilities
    • O25 - Economic Development, Innovation, Technological Change, and Growth - - Development Planning and Policy - - - Industrial Policy

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