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The basic objective in photovoltaics is obtaining electrical energy with the costs comparable to the costs of energy obtained from conventional fuels. The effectiveness of acquisition of electrical energy from solar cells can be improved, among other things, by using solar radiation concentrators. Photovoltaic systems with low concentration (LCPV) and high concentration (HCPV) were characterised [13]. The possibilities of their operation under various conditions were presented, whereas the impact of temperature and concentration angle were considered in particular. The most modern solutions were presented, including Spin cell, Ephocell, Interdigitated Back Contact (IBC), Luminescent Solar Concentrator (LSC), High Concentration PhotoVoltaic Thermal (HCPVT), Concentration PhotoVoltaic (CPV), Telecontrolli. Results of current Polish research were given. In the years from 1985 to 2010 the increase from 17,5 % to 40,7 % in the efficiency of solar cells with concentrators was achieved [18].
Słowa kluczowe
Rocznik
Tom
Strony
462--474
Opis fizyczny
Bibliogr. 23 poz., rys., tab.
Twórcy
- Poznań University of Technology 60-965 Poznań, Piotrowo 3a
autor
- Poznań University of Technology 60-965 Poznań, Piotrowo 3a
Bibliografia
- [1] Braun A., Alexis Vossier A., Eugene A. Katz E. A., Ekins-Daukes N. J.,M. Gordon. Multiple-bandgap vertical-junction architectures for ultra-efficient concentrator solar cells. Energy & Environmental Science, 2012; 5 (9): 8523.
- [2] Brożek E., Swat A., Sornek K.: Analiza mocy ogniw fotowoltaicznych w skoncentrowanym promieniowaniu słonecznym, www.eko-dok.pl/2014.
- [3] Frydrychowicz-Jastrzębska G., Bugała A.: Comparison of the efficiency of solar modules operating with a two-axis follow-up system and with a fixed mount system, Przegląd Elektrotechniczny, 2014, 1, 63-65.
- [4] Jarzębski Z.M.: Energia słoneczna. Konwersja fotowoltaiczna, PWN, Warszawa, 1990.
- [5] Jastrzębska G.: Ogniwa słoneczne. Budowa, technologia i zastosowanie, WKŁ, Warszawa 2013.
- [6] Jastrzębska G.: Odnawialne źródła energii i pojazdy proekologiczne, WNT, Warszawa, 2009.
- [7] Jeremiasz O, Sarnecki J., Nikiel W., Teodorczyk M., Wnuk K., Kozłowski R, Gawlik D.: Luminescencyjne koncentratory energii promieniowania słonecznego w zakresie widzialnym i bliskiej podczerwieni, Elektronika 2010, 51 (5), 83-86.
- [8] Karp J.H., Tremblay E.J., Ford J.E.: Planar micro-optic solar concentrator, Optics Express, Vol. 18, Issue 2, 2010, pp. 1122-1133.
- [9] Karp J.H., Tremblay E.J., Ford J.E.: Planar micro-optic concentration using multiple imaging lenses into a common slab waveguide,” Proc. SPIE 2009, pp. 7407-11.
- [10] Lewandowski W.M.: Proekologiczne odnawialne źródła energii, WNT, Warszawa, 2006.
- [11] Lopez D., Munoz R., Valero S., Senabre C.: Analysis of a Ground - Mounted Double Axis Photovoltaic Installation in Spain, International Conference on Renewable Energies and Power Quality ICREPQ'11, Canary Island, 2011.
- [12] Lung I-Tao, Kuo Cherng-Tsong, Shin Hwa-Yuh, Hong Hwen-Fen, Lee Cheng-Dar, and Lin Tsung-Te: Establishment of One MW HCPV System at Taiwan, ISESCO Science and Technology Vision, Vol 6, N0 9, May 2010, pp. 50-53.
- [13] Luque A., Hegedus S.: Handbook of Photovoltaic Science and Engineering, Wiley 2011.
- [14] www.gramwzielone.pl (access 24.11.2013).
- [15] www.interia.pl/technika/news-ogniwa-zdolne-do-koncentracji-mocy (access 02.06.2013).
- [16] www.ist-world.org (access 16.06.2013).
- [17] www.katalog.xtech.pl (access 20.01.2014).
- [18] www.newloks.int.pan.wroc.pl (access 18.04.2013).
- [19] www.nrel.org.gov (access 20.08.2012).
- [20] www.rwe.com (access 13.08.2012).
- [21] www.sharp-world.com (access 17.08.2013).
- [22] www.soyter.pl Nowy koncentrator fotowoltaiczny firmy Telecontroll (access 20.05.2014).
- [23] https://en.wikipedia.org./wiki/Andasol (access 09.04.2014).
Typ dokumentu
Bibliografia
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bwmeta1.element.baztech-fe4a7ecd-ed08-4b91-8dde-e053f960570c