Bibliography: 1. Petrov V. L., Kuznetsov N. M. The energy complex of the Yamalo-Nenets Autonomous Okrug. MIAB. Mining Inf. Anal. Bull. 2025, no. 11, pp. 166—181. [In Russ]. DOI: 10.25018/0236_1493_2025_11_0_166.
2. Klyuev R. V., Morgoeva A. D., Gavrina O. A., Bosikov I. I., Morgoev I. D. Forecasting planned electricity consumption for the unified power system using machine learning. Journal of Mining Institute. 2023, vol. 261, pp. 392—402. [In Russ].
3. Berdnikov R. N., Kholkin D. V., Chausov I. S. Optimization of power supply systems of remote and isolated territories through energy flexibility management. Energeticheskaya politika. 2023, no. 1(179), pp. 94—106. [In Russ]. DOI: 10.46920/2409-5516_2023_1179.94.
4. Semenov A. S., Semenova M. N., Bebikhov Yu. V., Yakushev I. A. Computer modeling-based analysis of normal and emergency operation of power supply system at processing plant. MIAB. Mining Inf. Anal. Bull. 2026, no. 9, pp. 162—181. [In Russ]. DOI: 10.25018/0236_1493_2026_9_0_162.
5. Klyuev R. V. Substantiation of solutions for improving the energy efficiency of fan installations and hoisting machines under reconstruction of the Molibden mine. Mining Science and Technology (Russia). 2025, vol. 10, no. 1, pp. 84—94. [In Russ]. DOI: 10.17073/2500-0632-2024-10-362.
6. Petrov V. L., Burmatova E. K., Pichuev A. V. Integration of digital technologies into the design of power supply systems of mining enterprises. Mining Science and Technology (Russia). 2025, vol. 10, no. 4, pp. 393—403. [In Russ]. DOI: 10.17073/2500-0632-2025-09-461.
7. Holdmann G. P., Wies R. W., Vandermeer J. B. Renewable energy integration in Alaska’s remote islanded microgrids: economic drivers, technical strategies, technological niche development, and policy implications. Proceedings of the IEEE. 2019, vol. 107, no. 9, pp. 1820—1837. DOI: 10.1109/JPROC.2019.2932755.
8. McKinley P. C., Wilber M., Whitney E. Learning from Arctic microgrids: cost and resiliency projections for renewable energy expansion with hydrogen and battery storage. Sustainability. 2025, vol. 17, no. 13, article 5996. DOI: 10.3390/su17135996.
9. Kilinc N., Proskuryakova L. N. Modeling hybrid renewable microgrids in remote northern regions: a comparative simulation study. Energies. 2025, vol. 18, no. 21, article 5827. DOI: 10.3390/en18215827.
10. Igogo T., Awuah-Offei K., Newman A., Lowder T., Engel-Cox J. Integrating renewable energy into mining operations: opportunities, challenges, and enabling approaches. Applied Energy. 2021, vol. 300, article 117375. DOI: 10.1016/j.apenergy.2021.117375.
11. Tardy A., Rousse D. R., Mungyeko Bisulandu B.-J. R., Ilinca A. Enhancing energy sustainability in remote mining operations through wind and pumped-hydro storage: application to Raglan Mine, Canada. Energies. 2025, vol. 18, no. 9, article 2184. DOI: 10.3390/en18092184.
12. Kronja J., Galić I. Integration of renewable energy sources to achieve sustainability and resilience of mines in remote areas. Mining. 2025, vol. 5, no. 3, article 51. DOI: 10.3390/mining5030051.
13. Hjort J., Karjalainen O., Aalto J., Westermann S., Romanovsky V. E., Nelson F. E., Etzelmüller B., Luoto M. Degrading permafrost puts Arctic infrastructure at risk by mid-century. Nature Communications. 2018, vol. 9, article 5147. DOI: 10.1038/s41467-018-07557-4.
14. Schneider von Deimling T., Lee H., Ingeman-Nielsen T., Westermann S., Romanovsky V., Lamoureux S., Walker D. A., Chadburn S., Trochim E., Cai L., Nitzbon J., Jacobi S., Langer M. Consequences of permafrost degradation for Arctic infrastructure — bridging the model gap between regional and engineering scales. The Cryosphere. 2021, vol. 15, no. 5, pp. 2451—2471. DOI: 10.5194/tc-15-2451-2021.
15. Manos E., Witharana C., Liljedahl A. K. Permafrost thaw-related infrastructure damage costs in Alaska are projected to double under medium and high emission scenarios. Communications Earth & Environment. 2025, vol. 6, article 221. DOI: 10.1038/s43247-025-02191-7.
16. Dong Y., Xiao P., Zhang X., Ge D., Yu J., Chen Y., Wu Q., Ma Y., Liu R., Luan W., Liu H., Bai J. Increased vulnerability of Arctic potential ice roads under climate change. Communications Earth & Environment. 2025, vol. 6, article 37. DOI: 10.1038/s43247-025-02011-y.
17. Green N., Mueller-Stoffels M., Whitney E. An Alaska case study: diesel generator technologies. Journal of Renewable and Sustainable Energy. 2017, vol. 9, article 061701. DOI: 10.1063/1.4986585.
18. Johnstone R. L., Buhmann K. Megaprojects on ice: lessons from the Karahnjukar hydropower project for a just transition. The Polar Journal. 2023, vol. 13, no. 2, pp. 320—342. DOI: 10.1080/2154896X.2023.2269691.
19. Yu Q. H., Zhang Z. Q., Wang G. S., Guo L., Wang X. B., Wang P. F., Bao Z. H. Analysis of tower foundation stability along the Qinghai—Tibet power transmission line and impact of the route on the permafrost. Cold Regions Science and Technology. 2016, vol. 121, pp. 205—213. DOI: 10.1016/j.coldregions.2015.06.015.
20. Klyuev R. V. Quantitative assessment of harmonic distortions in power supply systems of mining enterprises. Sustainable Development of Mountain Territories. 2026, vol. 18, no. 2, pp. 756—765. [In Russ]. DOI: 10.21177/1998-4502-2026-18-2-756-765.
21. Norgate T., Haque N. Energy and greenhouse gas impacts of mining and mineral processing operations. Journal of Cleaner Production. 2010, vol. 18, no. 3, pp. 266—274. DOI: 10.1016/j.jclepro.2009.09.020.