Будь ласка, використовуйте цей ідентифікатор, щоб цитувати або посилатися на цей матеріал: http://elartu.tntu.edu.ua/handle/lib/36926

Повний запис метаданих
Поле DCЗначенняМова
dc.contributor.authorMartynyuk, Valeriy
dc.contributor.authorFedula, Mykola
dc.contributor.authorMakaryshkin, Denys
dc.contributor.authorKałaczyński, Tomasz
dc.coverage.temporal15-17 December 2021
dc.date.accessioned2021-12-28T20:03:12Z-
dc.date.available2021-12-28T20:03:12Z-
dc.date.created2021-12-15
dc.date.issued2021-12-15
dc.identifier.citationThe increasing of photovoltaic power supply system efficiency for the mobile unit of polymer waste processing into an alternative type of fuel / Valeriy Martynyuk, Mykola Fedula, Denys Makaryshkin, Tomasz Kałaczyński // ICAAEIT 2021, 15-17 December 2021. — Tern. : TNTU, Zhytomyr «Publishing house „Book-Druk“» LLC, 2021. — P. 53–58. — (Electrical engineering and power electronics).
dc.identifier.isbn978-617-8079-60-4
dc.identifier.urihttp://elartu.tntu.edu.ua/handle/lib/36926-
dc.format.extent53-58
dc.language.isoen
dc.publisherTNTU, Zhytomyr «Publishing house „Book-Druk“» LLC
dc.relation.ispartofProceedings of the International Conference „Advanced applied energy and information technologies 2021”, 2021
dc.relation.urihttps://innovoucher.com.ua/portfolio-items/obolon-oil-and-its-poly-euro-diesel-made-of-waste/?lang=en
dc.subjectPhotovoltaic power supply system
dc.subjectMobile polymer waste processing unit
dc.subjectAlternative type of fuel
dc.subjectRechargeable batteries
dc.subjectSupercapacitor batteries
dc.titleThe increasing of photovoltaic power supply system efficiency for the mobile unit of polymer waste processing into an alternative type of fuel
dc.typeConference Abstract
dc.rights.holder© Ternopil Ivan Puluj National Technical University, Ukraine, 2021
dc.coverage.placenameTernopil
dc.format.pages6
dc.relation.referencesen1. Hahladakis, J.N. (2020). Delineating and preventing plastic waste leakage in the marine and terrestrial environment. Environ Sci Pollut Res, 27(11), doi:10.1007/s11356-020-08139-y
dc.relation.referencesen2. Thahir, R., Altway, A., Juliastuti, S.R., Susianto, (2019). Production of liquid fuel from plastic waste using integrated pyrolysis method with refinery distillation bubble cap plate column. Energy Reports, 5, 70-77. doi:10.1016/j.egyr.2018.11.004
dc.relation.referencesen3. https://innovoucher.com.ua/portfolio-items/obolon-oil-and-its-poly-euro-diesel-made-of-waste/?lang=en
dc.relation.referencesen4. Martynyuk, V., Radelchuk, G., Kashtalyan, A., Verjbyckyi, Y. (2020). System analysis and simulation of electric power processes of automated mobile plastic bottle processing plant in diesel fuel. Measuring and computing devices in technological processes, 1, 111-115.
dc.relation.referencesen5. Berbaoui, B. (2019). Performance investigation of a hybrid PV‐diesel power system for remote areas. International Journal of Energy Research, 43(2), 1019-1031.
dc.relation.referencesen6. Akbar, M.A. (2018). Modeling and optimum design of an off-grid PV/WT/FC/diesel hybrid system considering different fuel prices. Low-Carbon Technologies, 13(2), 140–147.
dc.relation.referencesen7. Nayak, A., Kasturi, K., Nayak, M.R. (2018). Cycle-charging dispatch strategy based performance analysis for standalone PV system with DG & BESS, Technologies for Smart-City Energy Security and Power (ICSESP), Proceedings of the Conference. Bhubaneswar, India.
dc.relation.referencesen8. Tsai, C.T., Shen, T.W., Chen, Y.P., Hsu, P.H. (2018). Control Strategy of PV/Diesel/Battery Hybrid System for Island-based Microgrid, International Symposium on Computer, Consumer and Control (IS3C), Proceedings of the International Symposium. Taichung, Taiwan.
dc.relation.referencesen9. Tripathi, P., Momtaj A.M., Khan M.J., Yadav, S. (2018). Modelling of Energy Efficient PV-Diesel-Battery Hybrid system, Computational and Characterization Techniques in Engineering & Sciences (CCTES), Proceedings of the International Conference, Lucknow, India.
dc.relation.referencesen10. Tiwari, G.N. (2016). Handbook of solar energy. Theory, analysis and applications. Springer.
dc.relation.referencesen11. Subudhi, B. (2013). A comparative study on maximum power point tracking techniques for photovoltaic power systems. IEEE transactions on sustainable energy, 4, 89–98.
dc.relation.referencesen12. Roy, C.P., Naick, B. K., Shankar, G. (2014). Comparative study of photovoltaic mppt algorithms. Recent trends in engineering and technology, 11, 191–201.
dc.relation.referencesen13. Ramu, G., Nagesh Kumar, G. V., Dharma Raj, C. H. (2016). Performance analysis of boost fed DC drive under load uncertainties. Indian Journal of Science and Technology, 9(45), 1–11. doi:10.17485/ijst/2016/v9i45/103878
dc.relation.referencesen14. Martynyuk, V., Ortigueira, M., Fedula, M., Savenko, O. (2018). Methodology of electrochemical capacitor quality control with fractional order model. AEU - International journal of electronics and communications.
dc.identifier.citationenMartynyuk V., Fedula M., Makaryshkin D., Kałaczyński T. (2021) The increasing of photovoltaic power supply system efficiency for the mobile unit of polymer waste processing into an alternative type of fuel. ICAAEIT 2021 (Tern., 15-17 December 2021), pp. 53-58.
dc.contributor.affiliationKhmelnytskyi National University, Khmelnytsky, Ukraine, 11 Institutska street
dc.contributor.affiliationUTP University of Science and Technology, Bydgoszcz, Poland, Al. Prof. S.Kaliskiego 7
dc.citation.spage53
dc.citation.epage58
Розташовується у зібраннях:International conference „Advanced Applied Energy and Information Technologies 2021“, (ICAAEIT 2021)



Усі матеріали в архіві електронних ресурсів захищені авторським правом, всі права збережені.