FEATURES OF OPERATION OF AUTONOMOUS CHARGER STATIONS BY ELECTRIC VEHICLES USING WIND ELECTRIC TURBINES AND BUFFER BATTERIES OF ENERGY
ARTICLE_9_PDF (Українська)

Keywords

wind turbine
battery
electric vehicle
autonomous charging station вітроелектрична установка
акумуляторна батарея
електромобіль
автономна зарядна станція

How to Cite

[1]
Павлов , В., Кудря , С., Будько , В., Кириленко , В. and Іванчук , В. 2019. FEATURES OF OPERATION OF AUTONOMOUS CHARGER STATIONS BY ELECTRIC VEHICLES USING WIND ELECTRIC TURBINES AND BUFFER BATTERIES OF ENERGY. Tekhnichna Elektrodynamika. 4 (Jun. 2019), 070. DOI:https://doi.org/10.15407/techned2019.04.070.

Abstract

A mathematical description of the operation of an autonomous charging station of electric vehicles with the use of wind turbines is proposed. The energy intensity of the buffer energy accumulator is substantiated when implementing autonomous charging stations of electric vehicles with the use of wind power plants as electric power generators. The features of providing electric energy of the charging station on the basis of real data of wind speed are considered. The installed energy buffer battery is required for the guaranteed charge of electric vehicles.  References 12, figures 5.

https://doi.org/10.15407/techned2019.04.070
ARTICLE_9_PDF (Українська)

References

Kudria S.O., Budko V.I. Introduction to Alternative and Renewable Energy. Electronic course of lectures. Kyiv: Natsionalnyi Tekhnichnyi Universytet Ukrainy KPI, 2013. 360 p. (Ukr)

George Xydis, Evanthia Nanaki. Wind Energy Based Electric Vehicle Charging Stations Sitting. A GIS/Wind Resource Assessment Approach. Challenges. 2015. No 6. Pp. 258-270. URL: www.mdpi.com/journal/challenges (accessed 17.12.2018)

Hassan Fathabadi. Novel wind powered electric vehicle charging station with vehicle-to-grid (V2G) connec-tion capability. Energy Conversion and Management. 2017. Vol. 136. No 15. Pp. 229-239.

World's first wind powered electric charging station. URL: https://www.designboom.com/technology/worlds-first-wind-powered-electric-charging-station/ (accessed 17.12.2018)

Giraffe 2.0 is a Hybrid Wind-Solar Power Station & Carport. URL: https://www.innoventum.se/giraffe-2-0/ (accessed 17.12.2018)

Camilo Carrillo, José Cidrás, Eloy Díaz-Dorado, Andrés Felipe Obando-Montaño. An Approach to Deter-mine the Weibull Parameters for Wind Energy Analysis: The Case of Galicia (Spain). Energies an Open Access Journal by MDPI. 2014. No 7. Pp. 2676-2700. DOI: https://doi.org/10.3390/en7042676

Kuznetsov M.P. Probabilistic characteristics of the power of wind power plants in the electric power system. Diss. to bake sciences step Dr. Tech. Sciences: 05.14.08. Kyiv: Instytut vidnovliuvanoi enerhetyky Natsionalnoi Akademii nauk Ukrainy, 2015. 302 c. (Ukr)

Electric vehicle charging methods: 4 modes and fast charging. URL: https://electrica-shop.com.ua/articles/112.sposobi_zaryadki_elektromobiley_4_rezhima_i_bistraya_zar (accessed 17.12.2018) (Rus)

Pavlov V.B., Budko V.I. Methods of charge of electric vehicles from renewable energy sources. Scientific and practical conf. Renewable and hydrogen energy. 2018. Kyiv, 2018. Pp. 54-59. (Ukr)

Pavlov V.B., Budko V.I. Charging electric vehicles from renewable energy sources. Tekhnichna Elektrodynamika. 2017. No 6. Pp. 32–35. DOI: https://doi.org/10.15407/techned2017.06.032 (Ukr)

John Sun. Car Battery Efficiencie. URL: http://large.stanford.edu/courses/2010/ph240/sun1/ (accessed 17.12.2018)

Five-year plan: what electric cars are we waiting for by 2024. URL: https://www.autocentre.ua/ua/news/novinka/pyatiletka-kakie-elektromobili-my-zhdem-k-2024-godu-768315.html (accessed 17.12.2018) (Rus)

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