Creation and application of mobile multifunctional energy technology complexes
- Authors: Lachuga Y.F.1, Godzhaev Z.A.2, Redko I.Y.3
-
Affiliations:
- Department of Agricultural Sciences of the Russian Academy of Sciences
- Federal Scientific Agroengineering Center, All-Union Research Institute of Agricultural Mechanization
- South Ural State University
- Issue: Vol 23, No 1 (2022)
- Pages: 23-29
- Section: Articles
- URL: https://journals.rudn.ru/engineering-researches/article/view/31242
- DOI: https://doi.org/10.22363/2312-8143-2022-23-1-23-29
Cite item
Full Text
Abstract
Currently, there are processes of transformation of energy systems in the world, as a result of which a new architecture is being created. The main factors driving the transformation of energy systems are a significant reduction in the cost of energy generation and an increase in electricity consumption, including distributed generation, electric transport, electrification of mobile energy facilities in the agro-industrial complex, energy storage management system, energy supply and intellectualization of production. Factors in the development of energy technology complexes are also the possibility of creating environmentally friendly farms using renewable energy sources in areas with difficult-to-access logistics of energy resources, such as gasoline and diesel fuel. Reducing emissions of CO2 into the atmosphere and improving the environment is by no means the only fundamental result of the development of energy technology complexes. This paper reviews the basic principles of creating mobile energy complexes, based on the analysis. Multi-criteria formulation of the task for evaluating the effectiveness, allows you to identify the most appropriate quality criteria and functional limitations.
About the authors
Yury F. Lachuga
Department of Agricultural Sciences of the Russian Academy of Sciences
Email: akadema1907@mail.ru
SPIN-code: 1128-3299
Doctor of Technical Sciences, Professor, Academician of the Russian Academy of Sciences, Member of the Presidium of the Russian Academy of Sciences, Academician of the Russian Academy of Agricultural Sciences, Academician-Secretary of the Department of Agricultural Sciences, Russian Academy of Sciences 32A Leninsky Prospekt, Moscow, 119334, Russian Federation
Zakhid A. Godzhaev
Federal Scientific Agroengineering Center, All-Union Research Institute of Agricultural Mechanization
Email: fic51@mail.ru
ORCID iD: 0000-0002-1665-3730
Doctor of Technical Sciences, Professor, corresponding member of the Russian Academy of Sciences, Deputy Director
5 1-i Institutskii Proezd, Moscow, 109428, Russian FederationIvan Ya. Redko
South Ural State University
Author for correspondence.
Email: redko_iya@mail.ru
ORCID iD: 0000-0002-0259-1268
Doctor of Technical Sciences, Professor, Head of the Electric Power Industry Development Strategy
76 Prospekt Lenina, Chelyabinsk, 454080, Russian FederationReferences
- Andreyev VM, Barinov VA, Varfolomeyev SD, Godzhaev ZA, Grishin VI, Dyakonov AA, Yesyakov SYa, Lachuga YF, Kalyayev IA, Lunin KA, Matyukhin VF, Panchenko VYa, Redko IYa, Roketskiy LYu, Sigov AS, Stennikov VA, Shestakov AL, Tsivadze AYu. Development of comprehensive integrated power supply systems with the use of innovation technologies under the conditions of processes occurring around the world. Elektrichestvo. 2020;(3):4–12. (In Russ.) https://doi.org/10.24160/0013-5380-2020-3-4-12
- Redko IYa, Malozemov AA, Malozemov GA, Naumov AV, Kozminykh DV. Efficiency of using inverter power plants as part of multifunctional energy technology complexes. RUDN Journal of Engineering Researches. 2020;21(4):244–253. (In Russ.) http://doi.org/10.22363/2312-8143-2020-21-4-244-253
- Lachuga YuF, Strebkov DS, Godzhaev ZA, Redko IYa. Electrification of agricultural mobile power facilities based on the traction and energy concept of technology development. RUDN Journal of Engineering Researches. 2020;21(4):260–270. (In Russ.) http://doi.org/10.22363/2312-8143-2020-21-4-260-270
- Godzhaev ZA, Godzhaev TZ, Malakhov IS. Present and future of agricultural electric vehicles. In: Pryadkin VI. (ed.) Power Engineering and Electronics of Promising Cars: Materials of the All-Russian Scientific and Practical Conference. Voronezh; 2021. p. 4–9. http://doi.org/10.34220/PEEPC2021_4-9
- Godzhaev ZA, Senkevich SE, Kuzmin VA. Promising projects for the creation of robotic mobile energy facilities for agricultural purposes. Materials of the XII Multi-Conference on Management Problems (ICPU-2019) (Divnomorskoe, Gelendzhik, 23–28 September 2019) (vol. 2). Rostov-on-Don, Taganrog; 2019. p. 127–129. (In Russ.)
- Godzhaev ZA, Shevtsov VG, Lavrov AV, Zubina VA. Agricultural tractor park as an object of digitalization. Innovations in Agriculture. 2019;(4(33)):88–96. (In Russ.)
- Godzhaev ZA, Lachuga YuF. Energy-efficient mobile multifunctional traction and transport-technological means of digital agriculture. Energy Saving and Energy Efficiency – Dynamics of Development: IX International Congress: a collection of Abstracts of Pre-Treasures. St. Petersburg; 2019. p. 53–56. (In Russ.)
- Godzhaev ZA. Creation of highly efficient automated electric drives for transport and technological means of agriculture. Progress of Vehicles and Systems – 2018: Materials of the International Scientific and Practical Conference. Volgograd; 2018. p. 36–42. (In Russ.)
- Kotiev GO, Gumerov IF, Stadukhin AA, Kositsyn BB. Selection of the required deceleration for high-mobility wheeled vehicles with wear resistant brake systems. IOP Conf. Series: Materials Science and Engineering. 2020;879:0012030. http://doi.org/10.1088/1757-899X/819/1/012030
- Kotiev G, Padalkin B, Miroshnichenko A, Stadukhin A, Kositsy, B. A theoretical study on the highspeed electric tracked vehicle mobility. IOP Conf. Series: Materials Science and Engineering. 2020;820:00122012. http://doi.org/10.1088/1757-899X/820/1/012012