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Modeling Nuclear-Centric Scenarios for Ukraine’s Low-Carbon Energy Transition Using Diffusion and Regression Techniques

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  • Viktor Denysov

    (General Energy Institute, National Academy of Sciences of Ukraine, 03150 Kyiv, Ukraine)

  • Mykhailo Kulyk

    (General Energy Institute, National Academy of Sciences of Ukraine, 03150 Kyiv, Ukraine)

  • Vitalii Babak

    (General Energy Institute, National Academy of Sciences of Ukraine, 03150 Kyiv, Ukraine)

  • Artur Zaporozhets

    (General Energy Institute, National Academy of Sciences of Ukraine, 03150 Kyiv, Ukraine
    International Institute for Applied Systems Analysis, 2361 Laxenburg, Austria
    Green Technology Research Center, Yuan Ze University, Taoyuan 320, Taiwan
    State Institution “Center for Evaluation of Activity of Research Institutions and Scientific Support of Regional Development of Ukraine NAS of Ukraine”, 01601 Kyiv, Ukraine)

  • Ganna Kostenko

    (General Energy Institute, National Academy of Sciences of Ukraine, 03150 Kyiv, Ukraine)

Abstract

This study presents a mathematical model for forecasting the development of Ukraine’s Integrated Power System (IPS) until 2040, with a specific focus on the expansion of nuclear energy as a cornerstone of the nation’s low-carbon transition. The model is an extension of Frank Bass’s mixed influence diffusion model, incorporating both economic and technological factors. These factors are treated as stochastic variables essential for accurately predicting the evolution of an integrated energy system, particularly in the context of rapid renewable energy sources (RES) growth. The model employs regression techniques using generalized logistic curves, improving forecasting efficiency by aligning modeling parameters with experimental data. The study’s results indicate the potential for optimizing IPS components, including nuclear and thermal power generation, through the model’s application. The model is distinguished by its inclusion of economic and technological impacts, such as state matrices, control actions, and external influence matrices, which enhance the accuracy of simulations and predictions. The validation of the model, based on scenarios of electricity consumption and generation, shows significant alignment with observed trends, confirming the model’s reliability. The findings suggest that this model is an effective tool for developing and refining energy system scenarios, with nuclear energy playing a pivotal role in Ukraine’s sustainable energy future.

Suggested Citation

  • Viktor Denysov & Mykhailo Kulyk & Vitalii Babak & Artur Zaporozhets & Ganna Kostenko, 2024. "Modeling Nuclear-Centric Scenarios for Ukraine’s Low-Carbon Energy Transition Using Diffusion and Regression Techniques," Energies, MDPI, vol. 17(20), pages 1-18, October.
  • Handle: RePEc:gam:jeners:v:17:y:2024:i:20:p:5229-:d:1503013
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    References listed on IDEAS

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