Εμφανίζονται 1 - 20 Αποτελέσματα από 49 για την αναζήτηση '"фотоэлектрическая система"', χρόνος αναζήτησης: 0,71δλ Περιορισμός αποτελεσμάτων
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    Academic Journal

    Πηγή: Alternative Energy and Ecology (ISJAEE); № 6 (2024); 12-30 ; Альтернативная энергетика и экология (ISJAEE); № 6 (2024); 12-30 ; 1608-8298

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Girijaprasanna. https://www.hindawi.com/journals/itees/2023/8794874/; Classification and comparison of maximum power point tracking techniques for photovoltaic system. Ali Reza Reisi, Mohammad Hassan Moradi, Shahriar Jamasb. https://www.sciencedirect.com/science/article/abs/pii/S1364032112006661; https://www.solarhome.ru/basics/solar/pv/mppt.htm?ysclid=lonfah6wlz212657986; Photovoltaic System Modeling with Fuzzy Logic Based Maximum Power Point Tracking Algorithm. Hasan Mahamudul, Mekhilef Saad, Metselaar Ibrahim Henk. https://www.sciencedirect.com/science/article/pii/S2090447922003033; Manna, Saibal & Singh, Deepak & Akella, Ashok & Kotb, Hossam & Aboras, Kareem & Zawbaa, Hossam & Kamel, Salah. (2023). Design and implementation of a new adaptive MPPT controller for solar PV systems. Energy Reports. 9. 1818-1829. 10.1016/j.egyr.2022.12.152.; Arshad, Naseem & Daud, Mohd & Md, Shahrin & Ayop, Razman. (2024). A Hybrid Maximum Power Point Tracking (MPPT) for Thermoelectric Generator (TEG) System. 10.1007/978-981-99-6749-0_36.; Mukti, Ersalina & Risdiyanto, Agus & Kristi, Ardath & Darussalam, Rudi. (2023). Particle Swarm Optimization (PSO) based Photovoltaic MPPT Algorithm under the Partial Shading Condition. Jurnal Elektronika dan Telekomunikasi. 23. 99. 10.55981/jet.552.; Padmanaban, Meganathan & Chinnathambi, Sasi & P., Pugazhendiran & Pachaivannan, Nammalvar. (2021). An Extensive Study on Online, Offline and Hybrid MPPT Algorithms for Photovoltaic Systems. Majlesi Journal of Electrical Engineering. 15. 1-16. 10.52547/mjee.15.3.1.; Grid-Connected Solar PV System with Maximum Power Point Tracking and Battery Energy Storage Integrated with Sophisticated Three-Level NPC Inverter. D. Ravi Kishore, Vijay Muni, Srinivas Raja, Mukesh Pushkarna, Srikanth Goud, Kareem M. AboRas, Sadam Alphonse. https://www.hindawi.com/journals/itees/2023/3209485/; Artificial intelligence techniques for photovoltaic applications. Adel Mellit, Soteris A. Kalogirou. https://www.sciencedirect.com/science/article/abs/pii/S0360128508000026#preview-section-snippets; Hasan Bektas Percin, Abuzer Caliskan. Whale optimization algorithm based MPPT control of a fuel cell system, International Journal of Hydrogen Energy, Volume 48, Issue 60, 2023, Pages 23230-23241, ISSN 0360-3199, https://doi.org/10.1016/j.ijhydene.2023.03.180.; A review of soft computing methods for harmonics elimination PWM for inverters in renewable energy conversion systems. Abdul Moeed Amjad, Zainal Salam. https://www.sciencedirect.com/science/article/abs/pii/S1364032114001026; studyinrussia.ru; https://power.larc.nasa.gov/data-access-viewer/; https://solarsystems.msk.ru/areas/#projects; Argastsev, A. Y., Zhdaneev, O. V., Stavtsev, A. V. et al. Inverters for Technological Development of Russia’s Energy Sector and Industry. Power Technol Eng 56, 309–318 (2022). https://doi.org/10.1007/s10749-02301511-1; Местников Н. П., Васильев П. Ф., Давыдов Г. И., Хоютанов А. М., Альзаккар А. М.-Н. ИССЛЕДОВАНИЕ ФУНКЦИОНИРОВАНИЯ ФОТОЭЛЕКТРИЧЕСКОЙ УСТАНОВКИ В УСЛОВИЯХ ОБЛАЧНОЙ ПОГОДЫ НА ТЕРРИТОРИИ СЕВЕРА // Вестник ИрГТУ. – 2022. – № 1 (162). https://doi.org/10.21285/1814-3520-2022-1-81-91; Xiao, Lingfei & Shen, Bin & Wei, Ye & Meng, Xiangshuo. (2023). MPPT Control of Solar Powered UAV Photovoltaic Power Supply Based on Intelligent Sliding Mode. 10.4271/2023-01-7095.; Rajesh Kannan, Venkatesan Sundharajan. A novel MPPT controller based PEMFC system for electric vehicle applications with interleaved SEPIC converter. International Journal of Hydrogen Energy, Volume 48, Issue 38, 2023, Pages 14391-14405, ISSN 0360-3199, https://doi.org/10.1016/j.ijhydene.2022.12.284; https://realsolar.ru/article/solnechnye-batarei/kolichestvo-solnechnoy-energii-v-regionah-rossii/; А. Бутузов. «Российская солнечная электроэнергетика». Окружающая среда и энерговедение. – № 2, 2020, С. 10-25. doi:10.5281/zenodo.3930294; Bazhenov, Stepan & Dobrovolsky, Yu. & Maksimov, A. & Zhdaneev, Oleg. (2022). Key challenges for the development of the hydrogen industry in the Russian Federation. Sustainable Energy Technologies and Assessments. 54. 102867.10.1016/j.seta.2022.102867.; Fatih Yilmaz, Murat Ozturk, Resat Selbas. Development and assessment of a solar-driven multigeneration plant with compressed hydrogen storage for multiple useful products. International Journal of Hydrogen Energy, Volume 48, Issue 99, 2023, Pages 39043-39063,ISSN 0360-3199, https://doi.org/10.1016/j.ijhydene.2022.12.080.; Junjie Zhao, Min Liu, Xuesong Zhang, Zhengkai Tu, Off-grid solar photovoltaic-alkaline electrolysis-metal hydrogen storage-fuel cell system: An investigation for application in eco-neighborhood in Ningbo, China, International Journal of Hydrogen Energy, Volume 48, Issue 50,2023, Pages 19172-19187, ISSN 0360-3199, https://doi.org/10.1016/j.ijhydene.2023.02.007.; Sabrina Fernandes Macedo, Drielli Peyerl. Prospects and economic feasibility analysis of wind and solar photovoltaic hybrid systems for hydrogen production and storage: A case study of the Brazilian electric power sector, International Journal of Hydrogen Energy, Volume 47, Issue 19, 2022, Pages 10460-10473, ISSN 0360-3199, https://doi.org/10.1016/j.ijhydene.2022.01.133.; Xuan Wang, Qi Li, Weirong Chen, Weiying Wang, Yuchen Pu, Jin Yu, Parallel interaction influence of single-stage photovoltaic grid-connected/hydrogen production multi-inverter system based on modal analysis. International Journal of Hydrogen Energy, Volume 44, Issue 11, 2019, Pages 5143-5152, ISSN 0360-3199, https://doi.org/10.1016/j.ijhydene.2018.10.046; Galitskaya, Elena & Zhdaneev, Oleg. (2022). Development of electrolysis technologies for hydrogen production: A case study of green steel manufacturing in the Russian Federation. Environmental Technology & Innovation. 27. 102517. 10.1016/j.eti.2022.102517.; Mengdi Ji., Jianlong Wang. Review and comparison of various hydrogen production methods based on costs and life cycle impact assessment indicators, International Journal of Hydrogen Energy, Volume 46, Issue 78, 2021, Pages 38612-38635, ISSN 0360-3199, https://doi.org/10.1016/j.ijhydene.2021.09.142.; Roxanne Pinsky, Piyush Sabharwall, Jeremy Hartvigsen, James O’Brien, Comparative review of hydrogen production technologies for nuclear hybrid energy systems, Progress in Nuclear Energy, Volume 123, 2020, 103317, ISSN 0149-1970, https://doi.org/10.1016/j.pnucene.2020.103317.; Galitskaya, E. & Khakimov, R. & Moskvin, A. & Zhdaneev, Oleg. (2023). Towards a new perspective on the efficiency of water electrolysis with anionconducting matrix. International Journal of Hydrogen Energy. 49. 10.1016/j.ijhydene.2023.10.339.; Егоров А. Н., Юрин В. Е. Первичное регулирование частоты тока в энергосистеме атомными электростанциями на основе водороднотеплового аккумулирования. Альтернативная энергетика и экология (ISJAEE). 2021; (1-3):21-33. https://doi.org/10.15518/isjaee.2021.01.002; Herczeg, B.; Pintér, É. The Nexus between Wholesale Electricity Prices and the Share of Electricity Production from Renewables: An Analysis with and without the Impact of Time of Distress. Energies 2024, 17, 857. https://doi.org/10.3390/en17040857; Chu, Steven & Majumdar, Arun. (2012). Opportunities and challenges for a sustainable energy future. Nature. 488. 294-303. 10.1038/nature11475.; Yang, Zhenguo & Zhang, Jianlu & Kintner-Meyer, Michael & Lu, Xiaochuan & Choi, Daiwon & Lemmon, John & Liu, William. (2011). Electrochemical Energy Storage for Green Grid. Chemical reviews. 111. 3577-613. 10.1021/cr100290v.; Fagerström, Jonathan & Das, Soumya & Klyve, Øyvind & Olkkonen, Ville & Marstein, Erik. (2024). Profitability of battery storage in hybrid hydropower-solar photovoltaic plants. Journal of Energy Storage. 77. 109827. 10.1016/j.est.2023.109827.; Tarasenko, Alexey & Kiseleva, S. & Popel’, O. (2022). Hydrogen energy pilot introduction – Technology competition. International Journal of Hydrogen Energy. 47. 10.1016/j.ijhydene.2022.01.242.; Li Ruihan, Hu Feng, Xia Ting, Li Yongzhi, Zhao Xin, Zhu Jiaqi,Progress in the application of first principles to hydrogen storage materials,Internation al Journal of Hydrogen Energy,Volume 56, 2024,Pages 1079-1091, ISSN 0360-3199, https://doi.org/10.1016/j.ijhydene.2023.12.259.; Faeze Moradi Nafchi, Ehsan Baniasadi, Ebrahim Afshari, Nader Javani. Performance assessment of a direct steam solar power plant with hydrogen energy storage: An exergoeconomic study, International Journal of Hydrogen Energy, Volume 47, Issue 62, 2022, Pages 26023-26037, ISSN 0360-3199, https://doi.org/10.1016/j.ijhydene.2022.01.250.; Emad Abdelsalam, Fares Almomani, Feras Kafiah, Hamza Alnawafah, Adel Juaidi, Ramez Abdallah. Integrating solar chimney power plant with electrolysis station for green hydrogen production: A promising technique, International Journal of Hydrogen Energy, Volume 52, Part B, 2024, Pages 1550-1563, ISSN 0360-3199, https://doi.org/10.1016/j.ijhydene.2023.08.305.; Chen, Siyuan & Chen, Zijie & Liu, Zhicun. (2023). Preparation and application of lithium batteries, nickel-hydrogen batteries and nickel-cadmium batter ies. Applied and Computational Engineering. 23. 59-67. 10.54254/2755-2721/23/20230612.; Uesato, Hiroki & Miyaoka, Hiroki & Ichikawa, Takayuki & Kojima, Yoshitsugu. (2019). Hybrid nickel-metal hydride/hydrogen battery. International Journal of Hydrogen Energy. 44. 10.1016/j.ijhydene.2018.12.114.; KOVTUN, Vladimir. (2022). Procedures for cognitive and synergetic observation and proactive control of power capacity of nickel-hydrogen storage batteries onboard a geostationary spacecraft. Space engineering and technology. 109-124. 10.33950/spacetech-2308-7625-2022-1-109-124.; Chen, Wei & Jin, Yang & Zhao, Jie & Liu, Nian & Cui, Yi. (2018). Nickel-hydrogen batteries for large-scale energy storage. Proceedings of the Nation al Academy of Sciences. 115. 201809344. 10.1073/pnas.1809344115.; Lee, Jisu & Song, Hyun-Kon. (2023). Low-Voltage Hydrogen Production via Hydrogen Peroxide Oxidation Facilitated by Oxo Ligand Axially Coordinated to Cobalt in Phthalocyanine Moiety. ECS Meeting Abstracts. MA2023-02. 62-62. http://dx.doi.org/10.1149/MA2023-02162mtgabs; Tao Hai, Ammar K. Alazzawi, Jincheng Zhou, Hamid Farajian, Performance improvement of PEM fuel cell power system using fuzzy logic controller-based MPPT technique to extract the maximum power under various conditions, International Journal of Hydrogen Energy, Volume 48, Issue 11, 2023, Pages 4430-4445, ISSN 0360-3199, https://doi.org/10.1016/j.ijhydene.2022.10.103.; Mostafa El-Shafie, Shinji Kambara, Yukio Hayakawa, Tomonori Miura. «Preliminary results of hydrogen production from water vapor decomposition using DBD plasma in a PMCR reactor». International Journal of Hydrogen Energy, Volume 44, Issue 36, 2019, Pages 20239-20248, ISSN 0360-3199, https://doi.org/10.1016/j.ijhydene.2019.05.199.; Zhdaneev, Oleg. (2022). Russian fuel and energy complex technology policy at the moment of energy transition. Eurasian Mining. 13-19. 10.17580/ em.2022.01.03.; Mostafa El-Shafie, Shinji Kambara,Comprehensive analysis of hydrogen production from various water types using plasma: Water vapour decomposition in the presence of ammonia and novel reaction kinetics analysis. International Journal of Hydrogen Energy, Volume 52, Part D, 2024, Pages 14-30, ISSN 0360-3199, https://doi.org/10.1016/j.ijhydene.2022.11.209.; Şehnaz Genç, Harun Koku, A preliminary techno-economic analysis of photofermentative hydrogen production. International Journal of Hydrogen Energy, Volume 52, Part D, 2024, Pages 212-222, ISSN 0360-3199, https://doi.org/10.1016/j.ijhydene.2023.03.475.; Fatueva, E. & Shpilkina, T. & Shishova, I. & Filimonova, N. (2023). Development of renewable energy and hydrogen energy in the Russian economy: problems and prospects. Scientific notes of the Russian academy of entrepreneurship. 22. 90-100. DOI:10.24182/2073-6258-2023-22-3-90-100.; https://www.isjaee.com/jour/article/view/2428

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    Academic Journal

    Πηγή: Eastern-European Journal of Enterprise Technologies; Vol. 6 No. 8 (114) (2021): Energy-saving technologies and equipment; 60-68
    Eastern-European Journal of Enterprise Technologies; Том 6 № 8 (114) (2021): Энергосберегающие технологии и оборудование; 60-68
    Eastern-European Journal of Enterprise Technologies; Том 6 № 8 (114) (2021): Енергозберігаючі технології та обладнання; 60-68

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    Academic Journal

    Συγγραφείς: Kirpichnikova, I.M., Makhsumov, I.B.

    Πηγή: Bulletin of the South Ural State University series "Power Engineering". 20:77-88

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    Academic Journal

    Πηγή: Visnyk of Vinnytsia Politechnical Institute; No. 5 (2021); 64-70 ; Вестник Винницкого политехнического института; № 5 (2021); 64-70 ; Вісник Вінницького політехнічного інституту; № 5 (2021); 64-70 ; 1997-9274 ; 1997-9266 ; 10.31649/1997-9266-2021-158-5

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    Academic Journal

    Πηγή: Devices and Methods of Measurements; Том 12, № 4 (2021); 286-291 ; Приборы и методы измерений; Том 12, № 4 (2021); 286-291 ; 2414-0473 ; 2220-9506 ; 10.21122/2220-9506-2021-12-4

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    Relation: https://pimi.bntu.by/jour/article/view/733/601; Krasovski V.I., Yacko P.V. Energy storage as devices for improving the operation of the electric power system with renewable energy sources ed technical and applied sciences: Sakharov readings 2020: environmental problems of the XXI century. Belarusian State University, ISEI BSU, Minsk, 2020, рart 2, pp. 393–396 (in Russian). DOI:10.46646/SAKH-2020-2-393-396; Shinyakov Yu.A. Extremal regulation of automatic space vehicle solar battery power. VESTNIK of the Samara State Aerospace University, 2007, no. 1(12), pp. 123–129 (in Russian). DOI:10.18287/2541-7533-2007-0-1(12)-123-129; Kulikov Y.A. Electrical energy storage – effective tool of power systems operation control. Electric power industry young people’s view– 2018. Kazan State Power Engineering Institute, 2018, рart 1, pp. 38–43 (in Russian).; Kötz R., Sauter J.C., Ruch P., Dietrich P., Büchi F.N., Magne P.A., Varenne P. Voltage balancing: long-term experience with the 250 V supercapacitor module of the hybrid fuel cell vehicle HY-LIGHT. Journal Power Sources, 2007, no. 174, pp. 264–271. DOI:10.1016/j.jpowsour.2007.08.078; Weingarth D., Foelske-Schmitz A., Kötz R. Cycle versus voltage hold: which is the better stability test for electrochemical double layer capacitors? Journal Power Sources, 2013, no. 225, рр. 84–88. DOI:10.1016/j.powsour.2012.10.019; Mars P. Coupling a supercapacitor with a small energy harvesting source. EDN Journal, June 2012.; Diab Y., Venet P., Gualous H., Rojat G. Self-discharge characterization and modeling of electrochemical capacitor used for power electronics applications. IEE Trans Power Electron, 2009, no. 24, pp. 511–517. DOI:10.1109/TPEL.2008.2007116; Lazzari M., Soavi F., Mastragostino M. Dynamic pulse power and energy of ionic-liquid-based supercapacitor for HEV application. Journal of The Electrochemical Society, 2009, no. 156, pp. 661–666. DOI:10.1149/1.3139046; Vasilevich V.P., Grickevich V.S., Kosmach V.V., Belyaev A.V., Zbyshinskaya M.E., Ermakov A.I. Supercapacitor as an energy storage of a photovoltaic converter. BSUIR Repository, 2016. ISSN: 2410-4655.; Thounthong P., Chunkag V., Sethakul P., Sikkabut S., Pierfederici S., Davat B. Energy management of fuel cell/solar cell/supercapacitor hybrid power source. Journal of Power Sources, 2011, vol. 196, no. 1, pp. 313– 324. DOI:10.1016/j.jpowsour.2010.01.051; Berdnikov R.N., Fortov V.E., Son E.E., Denʼshchikov K.K., ZHuk K.E., Novikov N.L., SHakaryan Yu.G. Hybrid electric power storage for ENES based on Li-ion batteries and supercapacitors Energy of Unified Grid. Scietnific and Technical Journal, 2013, no. 2(7), pp. 40–51 (in Russian).; Marenkov S.A. Hybrid accumulator of electricity for networks with distributed generation based on renewable sources of electrical energy. International Research Journal, 2017, vol. 2(56), part 3, рр. 120–123 (in Russian). DOI:10.23670/IRJ.2017.56.007; https://pimi.bntu.by/jour/article/view/733

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    Academic Journal

    Πηγή: Alternative Energy and Ecology (ISJAEE); № 1-3 (2021); 10-20 ; Альтернативная энергетика и экология (ISJAEE); № 1-3 (2021); 10-20 ; 1608-8298

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    Relation: https://www.isjaee.com/jour/article/view/2004/1681; Jäger-Waldau, A. PV Status Report 2019 / Jäger-WaldauLuxembourg: Publications Office of the European Union, 2019. 79 с.; Проектирование фотоэлектрических систем: учебно-методическое пособие / сост. А.А. Бутько и др. Минск: ИВЦ Минфина, 2018. 294 с.; ShafqatMughal. A Review on Solar Photovoltaic Technology and Future Trends / Shafqat Mughal,Yog Raj Sood, R.K Jarial // International Journal of Scientific Research in Computer Science, Engineering and Information Technology. 2018. V. 4. I. 1. P. 227–235.; Тукфатуллин, О.Ф. Выбор оптимального угла наклона фотоэлектрических панелей с однопозиционной фиксацией стационарных фотоэлектрических систем в зависимости от географической широты и инсоляции в течение года / О.Ф. Тукфатуллин // Гелиотехника. 2016. № 4. С. 17–20.; Турсунов, М.Н.Разработка фотоэлектрической установки для работы в условиях жаркого климата / М.Н. Турсунов [и др.] // Гелиотехника.2006.№ 3.С. 13–17.; Таджиев, У.А. Возможности использования солнечных фотоэлектрических и ветроэлектрических установок в системах электроснабжения сельских населённых пунктов, расположенных в удалённых местностях с особо сложными природными и климатическими условиями/ У.А. Таджиев, Р.А. Захидов, Е.И. Киселева // Гелиотехника. 2017. № 2. С. 66–71.; Таджиев, У.А. Возможности использования солнечных фотоэлектрических и ветроэлектрических установок в системах электроснабжения сельских населённых пунктов, расположенных в удалённых местностях с особо сложными природными и климатическими условиями. Часть II / У.А. Таджиев, Р.А. Захидов, Е.И. Киселева // Гелиотехника. 2017. № 3. С. 54–58.; Naihong Shu. Experimental and Theoretical Study on the Optimal Tilt Angle of Photovoltaic Panels / Naihong Shu [et al.] // Journal of Asian Architecture and Building Engineering. 2006. V. 5. No. 2. P. 399–405.; Habtamu, B.M. Performace analysis of roofmounted photovoltaic systems The case of a Norwegian residential building / B.M. Habtamu // Energy Procedia. 2015. 83. P. 474–483.; Akif Karafil. Calculation of Optimum Fixed Tilt Angle of PV Panels Depending on Solar Angles and Comparison of the Results with Experimental Study Conducted in Summer in Bilecik, Turkey / Akif Karafil // Published in:2015 9th International Conference on Electrical and Electronics Engineering (2628 November 2015, Bursa, Turkey) / Akif Karafil [et al.]–Bursa, 2015. –P. 971–976.; Jordan, D.C. Technology and Climate Trends in PV Module Degradation / D.C. Jordan // Presented at the 27th European Photovoltaic Solar Energy Conference and Exhibition (24–28 September 2012, Frankfurt, Germany) / D.C. Jordan, J.H. Wohlgemuth, S.R. Kurtz Frankfurt, 2012. P. 1–7.; Panagea, I.S. Climate Change Impact on Photovoltaic Energy Output: The Case of Greece / I.S. Panagea[et al.] // Advances in Meteorology. 2014. V. 2014. 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