Proceedings of International Conference on Applied Innovation in IT
2025/04/26, Volume 13, Issue 1, pp.255-260

Additional Protection Device for Grid Inverter of Photovoltaic Station


Isroil Yuldoshev, Sanjar Shoguchkarov, Shakhnoza Rustamova, Bozorbek Botirov, Tulkin Jamolov and Zukhra Jurayeva


Abstract: The article describes the large-scale implementation of solar photovoltaic installations and systems in the regions of Uzbekistan, and considers the issues of operation of the component equipment of photovoltaic power plants (PVPP) integrated with the low-voltage electric grid. There is carried out the analysis of the influence of low quality of electric power on the operating modes of the grid inverter in PVPP. There are studied the values of voltage, current and frequency of each phase in the low-voltage electric grid using a two-channel flat-panel oscilloscope FNIRSI -1013D. The voltage deviations of each phase in the low-voltage electric grid are determined; their values are under winter conditions, respectively. The archives of most inverters in PVPP integrated with the low-voltage distribution grid in the regions of Uzbekistan are studied and analyzed. The reasons for frequent disconnection and connection of grid inverters have been identified, which include voltage instability in phases, losses in the electrical network, incorrect grounding of the inverter, etc. Additional protective equipment has been developed and created for inverters of the solar power plant integrated with the low-voltage electrical network, distinguished by reliability, automation and availability of electrical components on the domestic market of Uzbekistan.

Keywords: Photovoltaic Battery, Electric Power, Grid-Tie Inverter, Low-Voltage Power Grid, Protection Device, Voltage, Frequency, Power Quality, Integration.

DOI: Under Indexing

Download: PDF

References:

  1. "Uzbekistan intends to increase the share of renewable energy sources in the country's energy balance to 54% by 2030," Presidential Meeting Materials, Dec. 13, 2024, [Online]. Available: https://www.finmarket.ru/news/6323342.
  2. K. Allaev, I. Rakhmonov, and U. Mamadaminov, "Current state and development prospects of Uzbekistan's electric power industry," Probl. Energy Sources Saving, no. 1, pp. 1-7, 2025, [Online]. Available: https://doi.org/10.5281/zenodo.15094235.
  3. M. K. Bobojanov, R. Ch. Karimov, T. H. Qosimov, and S. D. Zh. Dzhuraev, "Development and experimental study of circuits of contactless device for automation of compensation of reactive power of capacitor batteries," E3S Web Conf., vol. 289, p. 07012, 2021, [Online]. Available: https://doi.org/10.1051/e3sconf/202128907012.
  4. O. Zyukina and D. Ryabova, "Factors of deterioration of electric energy quality and their negative impact on electric energy receivers," Mod. Mater. Equip. Technol., no. 1, pp. 93-96, 2015.
  5. R. Karimov, A. Kuchkarov, M. Xodjalimova, R. Makhamadjanov, and A. Numonov, "Analysis and study of energy efficiency by the operation of a voltage stabilizer," J. Phys.: Conf. Ser., vol. 2094, no. 5, p. 052050, 2021, [Online]. Available: https://doi.org/10.1088/1742-6596/2094/5/052050.
  6. "Solar inverter failures: Causes, consequences and impact on energy output," Enlitia, Jan. 23, 2025, [Online]. Available: https://www.enlitia.com/resources-blog-post/solar-inverter-failures-causes-consequences-and-impact-on-energy-output.
  7. N. Jenkins and J. Ekanayake, Renewable Energy Engineering, 2nd ed. Cambridge: Cambridge Univ. Press, 2024, [Online]. Available: https://www.amazon.com/Renewable-Energy-Engineering-Nick-Jenkins/dp/1009295764.
  8. R. Karimov, "Improving the quality of 0.4 kV electricity in household appliances due to voltage regulation," E3S Web Conf., vol. 384, p. 01056, 2023, [Online]. Available: https://doi.org/10.1051/e3sconf/202338401056.
  9. F. L. Luo and H. E, Advanced DC/AC Inverters: Applications in Renewable Energy. Boca Raton, FL: CRC Press, 2013, [Online]. Available: https://doi.org/10.1201/b13750.
  10. K. Mertens, Photovoltaics Fundamentals, Technology and Practice. Munich: Carl Hanser Verlag, 2014, [Online]. Available: http://ndl.ethernet.edu.et/bitstream/123456789/87792/3/Photovoltaics%20Fundamental%20and.pdf.
  11. *GOST 32144-2013: Electrical Energy. Electromagnetic Compatibility of Technical Equipment. Power Quality Standards in General Purpose Power Supply Systems*, 2014, [Online]. Available: https://meganorm.ru/Data2/1/4293776/4293776477.pdf.
  12. *GOST 30804.4.30-2013 (IEC 61000-4-30:2008): Electrical Energy. Electromagnetic Compatibility of Technical Equipment. Methods of Measuring Power Quality Indicators*, 2013, [Online]. Available: https://docs.cntd.ru/document/1200104665.
  13. S. D. Dzhuraev et al., "Study and analysis of power quality in the electrical networks of the outdoor lighting of the Dushanbe City," in Proc. 2022 Conf. Russ. Young Res. Electr. Electron. Eng. (ElConRus), 2022, pp. 1167-1169, [Online]. Available: https://doi.org/10.1109/ElConRus54750.2022.9755782.
  14. N. Avezova, S. Shoguchkarov, and A. Kudratov, "Methodology for calculating the indicator of availability of network PV power plants," Probl. Energy Sources Saving, no. 1, pp. 106-117, 2025, [Online]. Available: https://doi.org/10.5281/zenodo.15099748.
  15. "Reports by Prof. A. Kiryukhin and others under the Solar Universities project," Solar Universities, 2024, [Online]. Available: https://solar-universities.org/.
  16. I. Yuldoshev et al., "Features of operation of the grid connected photovoltaic power station with a capacity of 10 kW," E3S Web Conf., vol. 216, p. 01172, 2020, [Online]. Available: https://doi.org/10.1051/e3sconf/202021601172.
  17. I. Yuldoshev et al., "Additional protective device of the network inverter of a photovoltaic plant against harmonic changes in the local electric network," Util. Model Patent FAP 2022 0442, 2022.


    HOME

       - Call for Papers
       - Paper Submission
       - For Authors
       - For Reviewers
       - Important Dates
       - Conference Committee
       - Editorial Board
       - Reviewers
       - Last Proceedings


    PROCEEDINGS

       - Volume 13, Issue 1 (ICAIIT 2025)        - Volume 12, Issue 2 (ICAIIT 2024)        - Volume 12, Issue 1 (ICAIIT 2024)        - Volume 11, Issue 2 (ICAIIT 2023)
       - Volume 11, Issue 1 (ICAIIT 2023)
       - Volume 10, Issue 1 (ICAIIT 2022)
       - Volume 9, Issue 1 (ICAIIT 2021)
       - Volume 8, Issue 1 (ICAIIT 2020)
       - Volume 7, Issue 1 (ICAIIT 2019)
       - Volume 7, Issue 2 (ICAIIT 2019)
       - Volume 6, Issue 1 (ICAIIT 2018)
       - Volume 5, Issue 1 (ICAIIT 2017)
       - Volume 4, Issue 1 (ICAIIT 2016)
       - Volume 3, Issue 1 (ICAIIT 2015)
       - Volume 2, Issue 1 (ICAIIT 2014)
       - Volume 1, Issue 1 (ICAIIT 2013)


    PAST CONFERENCES

       ICAIIT 2025
         - Photos
         - Reports

       ICAIIT 2024
         - Photos
         - Reports

       ICAIIT 2023
         - Photos
         - Reports

       ICAIIT 2021
         - Photos
         - Reports

       ICAIIT 2020
         - Photos
         - Reports

       ICAIIT 2019
         - Photos
         - Reports

       ICAIIT 2018
         - Photos
         - Reports

    ETHICS IN PUBLICATIONS

    ACCOMODATION

    CONTACT US

 

        

         Proceedings of the International Conference on Applied Innovations in IT by Anhalt University of Applied Sciences is licensed under CC BY-SA 4.0


                                                   This work is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License


           ISSN 2199-8876
           Publisher: Edition Hochschule Anhalt
           Location: Anhalt University of Applied Sciences
           Email: leiterin.hsb@hs-anhalt.de
           Phone: +49 (0) 3496 67 5611
           Address: Building 01 - Red Building, Top floor, Room 425, Bernburger Str. 55, D-06366 Köthen, Germany

        site traffic counter

Creative Commons License
Except where otherwise noted, all works and proceedings on this site is licensed under Creative Commons Attribution-ShareAlike 4.0 International License.