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Zwiększenie sprawności hybrydowego systemu fotoelektrycznego wyposażonego w akumulator na potrzeby lokalnego obiektu z wytworzeniem energii elektrycznej do sieci
Języki publikacji
Abstrakty
The implementation of the electricity generation planned for the day ahead to the grid during peak hours based on the forecast of the generation of a photovoltaic battery is considered. The value of the energy capacity of the storage battery is substantiated with the reference of the initial degree of its charge and the limitation of the degree of discharge when the generation power in the evening peak is 37.5%, and in the morning peak up to 200% relatively to the load power. Simulation modeling showed the possibility of reducing the cost of paying for electricity consumed from the grid at one tariff rate from 1.3 times (in cloudy weather in winter) to 39 times (in summer).
Rozważa się wprowadzenie do sieci zaplanowanej na następny dzień produkcji energii elektrycznej w godzinach szczytu na podstawie prognozy produkcji baterii fotowoltaicznej. Wartość pojemności energetycznej akumulatora uzasadniono odniesieniem do początkowego stopnia jego naładowania i ograniczenia stopnia rozładowania, gdy moc wytwarzania w szczycie wieczornym wynosi 37,5%, a w szczycie porannym do 200 % w stosunku do mocy obciążenia. Modelowanie symulacyjne wykazało możliwość obniżenia kosztów płacenia za energię elektryczną pobieraną z sieci przy jednej stawce taryfowej od 1,3-krotności (przy pochmurnej pogodzie zimą) do 39-krotnej (latem).
Wydawca
Czasopismo
Rocznik
Tom
Strony
144--149
Opis fizyczny
Bibliogr. 24 poz., rys., tab.
Twórcy
autor
- Kyiv National University of Technologies and Design, Department of Computer Engineering and Electromechanics, Nemirovicha Danchenka str. 2, 01011 Kyiv
autor
- Kyiv National University of Technologies and Design, Department of Computer Engineering and Electromechanics, Nemirovicha Danchenka str. 2, 01011 Kyiv
autor
- Kyiv National University of Technologies and Design, Department of Computer Engineering and Electromechanics, Nemirovicha Danchenka str. 2, 01011 Kyiv
autor
- Kyiv National University of Technologies and Design, Department of Computer Engineering and Electromechanics, Nemirovicha Danchenka str. 2, 01011 Kyiv
Bibliografia
- [1] Rao B.H., Selvan M.P. Prosumer Participation in a Transactive Energy Marketplace: A Game-Theoretic Approach, IEEE International Power and Renewable Energy Conference, Karunagappally, (2020), India, 1-6. doi: 10.1109/IPRECON 49514.2020.9315274.
- [2] Nicolson M., Fell M., Huebner G. Consumer demand for time of use electricity tariffs: A systematized review of the empirical evidence, Renewable and Sustainable Energy Reviews, (2018), No. 97, 276-289. doi: https://doi.org/10.1016/j.rser.2018.08.040.
- [3] ABB solar inverters. Product manual REACT-3.6/4.6-TL (from 3.6 to 4.6 kW). [Online]. Available: www.abb.com /solarinverters.
- [4] Guerrero-Martinez M., Milanes-Montero M., Barrero- Gonzalez F., Miñambres-Marcos V., Romero-Cadaval E., Gonzalez-Romera E. A Smart Power Electronic Multiconverter for the Residential Sector, Sensors, 17 (2017). No. 6, 1-16. doi:10.3390/s17061217, www.mdpi.com/journal/sensors.
- [5] Roncero-Clemente C., González-Romera E., Barrero- González F., Milanés-Montero M., Romero-Cadaval, E. Powerflow- based Secondary Control for Autonomous Droopcontrolled AC Nanogrids with Peer-to-Peer Energy Trading, IEEE Access, (2021), No. 9, 22339-22350. doi: 10.1109/ACCESS.2021.3056451.
- [6] Slama F., Radjeai H., Mouassa S., Chouder A. New algorithm for energy dispatch scheduling of grid-connected solar photovoltaic system with battery storage system, Electrical Engineering & Electromechanics, (2021), No. 1, 27-34. doi: 10.20998/2074-272X.2021.1.05.
- [7] Ma Tsao-Tsung. Power Quality Enhancement in Micro-grids Using Multifunctional DG Inverters, Proceedings of the International MultiConference of Engineers and Computer Scientists, II, (2012), 996-1001.
- [8] Rachid Belaidi, Ali Haddouche. A multi-function grid-connected PV system based on fuzzy logic controller for power quality improvement, Przegląd elektrotechniczny, (2017), No. 10, 118- 122.
- [9] Shavelkin А., Mohmed J., Shvedchykova I. Improvement the current control loop of the single-phase multifunctional grid-tied invertor of photovoltaic system, Eastern-European Journal of Enterprise Technologies, (2019), No. 6/5 (102), 14-22, doi: 10.15587/1729-4061.2019.185391.
- [10] Vigneysh T., Kumarappan N. Grid interconnection of renewable energy sources using multifunctional grid-interactive converters: A fuzzy logic based approach, Electric Power Systems Research, (2017), No. 151, 359-368.
- [11] Ruben Lliuyacc, Juan M. Mauricio, Antonio Gomez-Exposito, Mehdi Savaghebi, Josep M. Guerrero. Grid-forming VSC control in four-wire systems with unbalanced Nonlinear loads, Electric Power Systems Research, (2017), No. 152, 249–256.
- [12] Shavolkin O., Shvedchykova I. Improvement of the threephase multifunctional converter of the photoelectric system with a storage battery for a local object with connection to a grid, Proceedings of the IEEE Problems of Automated Electrodrive. Theory and Practice (PAEP), Kremenchuk, Ukraine, (2020), 1- 6. doi: 10.1109/PAEP49887.2020.9240789.
- [13] Xiyun Yang, Feifei Jiang, Huan Liu. Short-Term Power Prediction of Photovoltaic Plant Based on SVM with Similar Data and Wavelet Analysis, Przegląd elektrotechniczny, (2013), No. 05, 81-85.
- [14] Forecast. Solar. [Online]. Available: https://forecast.solar/.
- [15] Iyengar S., Sharma N., Irwin D., Shenoy P., Ramamritham K. SolarCast – an open web service for predicting solar power generation in smart homes, Proceedings of the 1st ACM Conference on Embedded Systems for Energy-Efficient Buildings. (2014), November, 174–175. doi: https://doi.org/10.1145/2674061.2675020.
- [16] Michaelson D., Mahmood H., Jiang J. A Predictive Energy Management System Using Pre-Emptive Load Shedding for Islanded Photovoltaic Microgrids, Proceedings of the IEEE Transactions on Industrial Electronics, (2017). No. 64/7, 5440- 5448. doi: 10.1109/TIE.2017.2677317.
- [17] Traore A., Taylor A., Zohdy M., Peng F. Modeling and Simulation of a Hybrid Energy Storage System for Residential Grid-Tied Solar Microgrid Systems, Journal of Power and Energy Engineering, (2017), No. 5, 28-39. doi: https://doi.org/10.4236/jpee.2017.55003.
- [18] Shavolkin O., Shvedchykova I., Demishonkova S. Simulation model of the photovoltaic system with a storage battery for a local object connected to a grid with multi-zone tariffication, Proceeding of the 2020 IEEE 7th International Conference on Energy Smart Systems (ESS), Kyiv, Ukraine, 2020, pp. 368- 372. doi: 10.1109/ESS50319.2020.9160112.
- [19] Shavolkin O., Shvedchykova I., Jasim J.M.J. Improved control of energy consumption by a photovoltaic system equipped with a storage device to meet the needs of a local facility, Eastern- European Journal of Enterprise Technologies, (2021), No. 2 (8 (110)), 6–15. doi: https://doi.org/10.15587/1729- 4061.2021.228941.
- [20] Shavolkin O., Shvedchykova I. Improvement of the multifunctional converter of the photoelectric system with a storage battery for a local object with connection to a grid, Proceedings of the IEEE KhPI Week on Advanced Technology (KhPIWeek), (2020), 287-292. doi: 10.1109/KhPIWeek51551.2020.9250096.
- [21] Sotnyk I., Zavdovyev Y., Zavdovyev O. Multi-rate Tariffs in the Management of Electricity Demand, Mechanism of Economic Regulation, (2014), No. 2, 106-113.
- [22] Photovoltaic geographical information system. [Online]. Available at: https://re.jrc.ec.europa.eu/pvg_tools/en/ tools.html#SA.
- [23] Data sheet. LITHIUM IRON PHOSPHATE (LIFEPO4) BATTERY 12.8V 150Ah. [Online]. Available at: www.enixenergies. com.
- [24] OPzV12-100 (12V100Ah) HENGYANG RITAR POWER CO. LTD. [Online]. Available at: www.ritarpower.com.
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2021).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-586e4989-9378-4b8e-992e-a3f46d7b4592