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[1] H.H.Pourasl, R.V. Barenji, V.M. Khojastehnezhad. “Solar energy status in the world: a comprehensive review” Energy Rep.,10 (2023), pp.3474-3493. https://doi.org/10.1016/j.egyr.2023.10.022. [2] Haiying Liu, Pengcheng Han. “Renewable energy development and carbon emissions: The role of electricity exchange”, Journal of Cleaner Production,2024, 140807, ISSN 0959-6526. https://doi.org/10.1016/j.jclepro.2024.140807.[3] Adam, A.D., Apaydin, G., 2016. Grid connected solar photovoltaic system as a tool for green house gas emission reduction in Turkey. Renew. Sustain. Energy Rev. 53, 1086-1091. [4] Hwayoung Jeon, CO2 emissions, renewable energy and economic growth in the US, Volume 35, Issue 7, August–September 2022, 107170. https://doi.org/10.1016/j.tej.2022.107170. [5] Muhammad Nizami, Slamet, Widodo Wahyu Purwanto. Solar PV based power-to-methanol via direct CO2 hydrogenation and H2O electrolysis: Techno-economic and environmental assessment. Journal of CO2 Utilization. Volume 65, November 2022, 102253. https://doi.org/10.1016/j.jcou.2022.102253. [6] Muyiwa S. Adaramola, Emil E.T. Vagnes. Preliminary assessment of a small-scale rooftop PVgrid tied in Norwegian climatic conditions. Energy Conversion and Management. Volume 90, 15 January 2015, Pages 458-465. [7] Ramesh Chaudhary, Pratiksinh Chavda. To Study the Temporal Variation of Capacity Utilization Factor (CUF) of PV Based Solar Power Plant with Respect to Climatic Condition. Current World Environment. Vol. 11(2), 654-661 (2016). http://dx.doi.org/10.12944/CWE.11.2.38. [8] Sultan J. Alharbi, Abdulaziz S. Alaboodi. A Review on Techno-Economic Study for Supporting Building with PV-Grid-Connected Systems under Saudi Regulations. Energies 2023, 16, 1531. https://doi.org/10.3390/en16031531. [9] Boysori Yuldoshov, Elyor Saitov, Jasur Khaliyarov, Sardor Bobomuratov, Effect of Temperature on Electrical Parameters of Photovoltaic Module//Proceedings of International Conference on Applied Innovation in IT. Volume 11, Issue 1, pp. 291-295. (DOI:10.25673/101957). [10] R A Muminov, M N Tursunov, Kh Sabirov, Sh N Abilfayziyev, B A Yuldoshov and S F Toshpulatov. Testing of crystalline silicon-based photoelectric and photothermal batteries in real climate conditions and comparison of parameter changes. Journal of Physics: Conference Series 2388 (2022) 012128. doi:10.1088/1742-6596/2388/1/012128. [11] Tursunov M.N., Sabirov Kh, Abilfayziyev Sh.N., Yuldoshov B.A. Testing of different material type photoelectric battery and photothermal batteries composed. Eurasian Physical Technical Journal, 2022 №4(42), pp.44-50. [12] https://globalsolaratlas.info/detail?c=41.52174,64.567155,6&r=UZB [13] "Sunshine hours Termez 1991-2020". Termez 1991-2020. NOAA. Retrieved 1 November 2023. [14] Edalati S., Ameri M., and Iranmanesh M. Comparative performance investigation of mono-and poly-crystalline silicon photovoltaic modules for use in grid-connected photovoltaic systems in dry climates. Applied Energy, 160, 255-265. (2015). [15] M.N. Tursunov, Kh. Sabirov, T.Z. Axtamov, S.F. Toshpulatov. “Analysis of possibilities of using bifacial solar panels” INTERNATIONAL SCIENTIFIC JOURNAL VOLUME 2 ISSUE 5 MAY 2023. https://doi.org/10.5281/zenodo.7989511.