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Simulation of the impact of the degree and type of shading on generation of electrical energy by the PV system in MATLAB&SIMULINK environment

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
In the study the method of modelling of the photovoltaic system (PV) in MATLAB & SIMULINK environment was presented along with test results of the impact of shading on the value of energy output from the photovoltaic system. The PV system model constructed of five parallel connected photovoltaic panels of TPSM6U type was proposed. Simulation tests were conducted considering the effect of poor and strong shading of panels causing differences in the density of the radiation power (irradiance) for individual panels and the PV system. The values of electrical energy generated by individual PV panels and the whole photovoltaic system were determined for the purposes of the actual forces. Optional switching on and off of the bypass diodes was considered in the photovoltaic panels. The tests were developed and final conclusions were formulated.
Rocznik
Tom
Strony
454--468
Opis fizyczny
Bibliogr. 17 poz., rys., tab.
Twórcy
autor
  • Poznań University oif Technology 60-965 Poznań, ul. Piotrowo 3a
Bibliografia
  • [1] Bidram A., Davoudi A., Balog R. S., Control and Circuit Techniques to Mitigate Partial Shading Effects in Photovoltaic Arrays, Photovoltaics, IEEE Journal Of Photovoltaics, 2012, Vol. 2, No. 4, pages 532-546.
  • [2] Bizzarri F., Bongiorno M., Brambilla A., Gruosso G., Gajani G. S., Model of photovoltaic power plants for performance analysis and production forecast, Sustainable Energy, IEEE Transactions on energy conversion, 2013, Vol. 4, No. 2, pages 278-285.
  • [3] Chojnacki J., Odnawialne i niekonwencjonalne źródła energii. Fotowoltaika [Renewable and unconventional energy sources. Photovoltaics], Poradnik, Wydawnictwo TARBONUS, Kraków, 2008.
  • [4] Cipriani G., Di Dio V., La Manna D., Miceli R., Galluzzo G. R., Technical and Economical Comparison between Different Topologies of PV Plant Under Mismatch Effect, Ninth International Conference on Ecological Vehicles and Renewable Energies (EVER), 2014, pages 1-6.
  • [5] MATLAB technical documentation.
  • [6] Jarmuda T., Mikulski S., Nawrowski R., Tomczewski A., The use of the MATLAB & SIMULINK environment to simulate the operation of a PV panel with an actual input function, Computer Applications in Electrical Engineering, Poznan University of Technology, Poznan, December 2014, Vol. 12, pages 497-510.
  • [7] Jastrzębska G., Odnawialne źródła energii i pojazdy proekologiczne [Renewable energy resources and pro-ecological vehicles], Wydawnictwo Naukowo-Techniczne WNT, Warszawa, 2009.
  • [8] Catalogue card of panel TPSM6U manufactured by Topray Solar.
  • [9] Patel H., Agarwal V., MATLAB-Based Modeling to Study the Effects of Partial Shading on PV Array Characteristics, IEEE, Transactions on energy conversion, March 2008, Vol. 23, No. 1, pages 302-310.
  • [10] Ramabadran R., Mathur B., Effect of shading on series and parallel connected solar PV modules, Modern Applied Science, 2009, Vol. 3, No. 10, page P32.
  • [11] REN 21, STEERING COMMITTEE, Renewables 2013. Global status report, France, 2013.
  • [12] Sullivan C., Awerbuch J., Latham A., Decrease in photovoltaic power output from ripple: Simple general calculation and the effect of partial shading, Power Electronics, IEEE Transactions on energy conversion, February 2013, Vol. 28, No. 2, pages 740-747.
  • [13] Szymański B., Instalacje Fotowoltaiczne. Teoria. Praktyka. Prawo. Ekonomika [Photovoltaic systems. Theory. Practice. Law. Economics], Wydawnictwo GLOBENERGIA, Wydanie II, Kraków, 2013.
  • [14] Uno M., Kukita A., Single-Switch Voltage Equalizer Using Multistacked Buck –Boost Converters for Partially Shaded Photovoltaic Modules, IEEE Transactions on Power Electronics, June 2015, Vol. 30, No. 6, pages 3091-3105.
  • [15] Villa L. F. L., Picault D., Raison B., Bacha S., Labonne A., Maximizing the Power Output of Partially Shaded Photovoltaic Plants Through Optimization of the Interconnections Among Its Modules, IEEE Journal of Photovoltaics, April 2012, Vol. 2, No. 2, pages 154-163.
  • [16] Wandhare R. G., Agarwal V., Jain S., Novel Multi-Input Solar PV Topologies for 1-ø and 3-ø Stand Alone Applications to Mitigate the Effects of Partial Shading, Applied Power Electronics Conference And Exposition (APEC) Twenty-Eighth Annual IEEE Conference, 2013, pages 76-83.
  • [17] Wang Y.J., Hsu P.C., An investigation on partial shading of PV modules with different connection configurations of PV cells, Energy, 2011, Vol. 36, No. 5, pages 3069-3078.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-98e07765-632a-4259-81ab-ed419805e20c
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