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DOI: https://doi.org/10.15407/techned2020.05.065

NEW APPROACH TO SIMULATION OF EXTRA-POWER SOLAR PLANT WITH POWER EVACUATION BY NETWORKS OF THE CHERNOBYL NPP

Journal Tekhnichna elektrodynamika
Publisher Institute of Electrodynamics National Academy of Science of Ukraine
ISSN 1607-7970 (print), 2218-1903 (online)
Issue No 5, 2020 (September/October)
Pages 65 - 69

Authors
L. Lukianenko*, A. Steliuk**
Institute of Electrodynamics, National Academy of Sciences of Ukraine,
Peremohy Ave., 56, Kyiv, 03057, Ukraine,
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* ORCID ID : https://orcid.org/0000-0003-1749-5209
** ORCID ID : https://orcid.org/0000-0001-7548-4757

Abstract

This paper deals with the system study for the development and connection of 1200 MWp Chernobyl photovoltaic (PV) plant to the transmission grid of interconnected power system of Ukraine. The aim of this study is to develop the planetary models of solar power plant, to perform quasi-dynamic simulation and to check network steady-state operating conditions at peak production of the PV plant, including identification of the element loadings in the transmission and distribution networks, bus voltages in the area, fulfillment of the grid code requirements. References 5, figures 5.

Key words: extra-power solar plant, Chernobyl nuclear power plant (NPP), power evacuation, quasi-dynamic simulation, solar irradiation, voltage, equipment loading.

Received: 28.02.2020
Accepted: 12.05.2020
Published: 25.08.2020

 

References
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2. Nalis A. Quasi-Dynamic Characterization of Hybrid Photovoltaic/Thermal (PV/T) Flat-Plate Collectors, Ph.D. Degree Dissertation Thesis. Universitat de Lleida, 2012. URL: http://hdl.handle.net/10803/84100 (accessed 05.12.2019)
3. Report on Yield Assessment of the Photovoltaic Power Plant, pvPlanner, Solargis s.r.o., 2017
4. CAMS Radiation Service, 2017.URL: http://www.soda-pro.com/web-services/radiation/cams-radiation-service (accessed 15.01.2020)
5. Atmospheric Science Data Center, 2017. URL: https://eosweb.larc.nasa.gov/ (accessed 15.01.2020)

 

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