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Effective use of photovoltaic systems in polish conditions

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Photovoltaic (PV) systems form two groups: grid-connected ones and stand-alone ones. The first group can be divided into: centralized systems with large power (PV farms), and decentralized systems with low-power (especially prosumer ones). The second group includes systems with electric buffer sources (especially with electrochemical batteries), and those without electric buffer sources (possibly with non-electric buffer sources). Due to significant decline in price of PV modules, both of these groups are becoming increasingly common in Poland, especially grid-connected ones. Additional factor for prosumer systems is economic and legal support in a form of exemption from fees for connection to grid, lack of additional required licenses for such connection, and possible support in a form of guaranteed sale prices to grid (feed-in tariffs) of electrical energy generated in system. However, in case of systems not covered by economic benefits, increasing, or even ensuring, their cost-effectiveness, requires the number of ventures regarding areas of proper installation and operation rules of PV generator from installer/user/owner of system, as well as selection of suitable tariff and rational restructuring of energy demands. Detailed analysis and conclusions of these ventures, especially for prosumer systems, is discussed in paper.
Rocznik
Strony
147--154
Opis fizyczny
Bibliogr. 12 poz., rys.
Twórcy
autor
  • Electrical Engineering and Computer Science Faculty, Electrical Drives and Machines Department, Lublin University of Technology, Nadbystrzycka 38A Str., 20-618 Lublin, Poland
Bibliografia
  • 1. Borut Del Fabbro, Aljoša Valentinčič & Andrej F. Gubina, 2016. An adequate required rate of return for grid-connected PV systems. Solar Energy, Vol. 132, 73–83.
  • 2. Kacejko P., Pijarski P. & Gałązka K. 2014. Odnawialne źródła energii, prosument, mikrogeneracja, fotowoltaika, systemy wsparcia. Rynek Energii 5(114), 2014.
  • 3. Karki R. & Billinton R. 2001. Reliability/cost implications of PV and wind energy utilization in small isolated power systems. IEEE Transactions on Energy Conversion, 2001, 16(4), 368–373.
  • 4. Mikulik J. & Jurasz J. 2015. Determination of photovoltaic installation nominal power based on electrical energy consumption profile in the context of prosumer policy. Przegląd Elektrotechniczny, No. 1.
  • 5. Mandelli S., Barbieri J., Mereu R. & Colombo E. 2016. Off-grid systems for rural electrification in developing countries: Definitions, classification and a comprehensive literature review. Renewable and Sustainable Energy Reviews, Vol. 58, 1621–1646.
  • 6. Mohamed A. Elsaharty, Hamdy A. Ashour, Elyas Rakhshani, Edris Pouresmaeil, Joao P.S. Catalao 2016. A Novel DC-Bus Sensor-less MPPT Technique for Single-Stage PV Grid-Connected Inverters. Energies, 9(4), 248.
  • 7. Niechaj M. 2014. Modeling of photovoltaic generator operating in stand-alone system without electric buffer source. Przegląd Elektrotechniczny, 90(3), 215–218.
  • 8. Niechaj M. 2013. Autonomiczny fotowoltaiczny system napędowy bez elektrycznego źródła buforowego z silnikiem indukcyjnym jednofazowym. Napędy i Sterowanie, No. 9, 148–153.
  • 9. Reza Bakhshi & Javad Sadeh 2016. A comprehensive economic analysis method for selecting the PV array structure in grid–connected photovoltaic systems. Renewable Energy, Vol. 94, 524–536.
  • 10. Salpakari J. & Lund P. 2016. Optimal and rule-based control strategies for energy flexibility in buildings with PV. Applied Energy, Vol. 161, 425–436.
  • 11. Sangwongwanich Ariya, Yongheng Yang & Frede Blaabjerg, 2016. High-Performance Constant Power Generation in Grid-Connected PV Systems. IEEE Transactions on Power Electronics, 31(3), 1822–1825.
  • 12. Treado S. 2015. The Effect of Electric Load Profiles on the Performance of Off-Grid Residential Hybrid Renewable Energy Systems. Energies, 8(10), 11120–11138.
Uwagi
Opracowanie ze środków MNiSW w ramach umowy 812/P-DUN/2016 na działalność upowszechniającą naukę.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-5b9dd8bd-dabc-437f-b4d9-9e70777f3af9
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