DOI QR코드

DOI QR Code

III-V 화합물 반도체를 이용한 고효율 집광형 태양광 발전시스템 설계 및 성능분석

Designed and Performance Analysis of High Efficiency Concentrated Photovoltaic System using III-V Compound Semiconductor

  • 고재홍 (한국폴리텍광주대학 전기과)
  • Ko, Jae-Hong (Dept. of Electricity, Gwangju Campus of Korea Polytechnics)
  • 투고 : 2012.05.24
  • 심사 : 2012.07.23
  • 발행 : 2012.09.30

초록

For photovoltaic power generation need certainly decreasing module's price and increasing promote efficiency technology. Almost of solar panel is on the decrease energy efficiency since 2,000. like silicone(Si) solar panel, thin film solar panel and etc. Silicone(Si) solar panel was best efficiency in 1999. It's 24%. But after that time, It didn't pass limit of energy efficiency. That's why, nowadays being issued that using III-V compound semiconductor to high efficiency of concentrating photovoltaic system for making an alternative proposal. In Korea, making researches in allied technology with III-V compound semiconductor solar panel, condenser technology, and solar tracker. but feasibility study for concentrating photovoltaic power generation hasn't progressed yet. This thesis made a plan about CPV(Concentrating Photovoltaic)system and CPV has a higher energy efficiency than PV(Photovoltaic)system in fine climate conditions from comparing CPV with using silicone(Si) solar panel to PV's efficiency test result.

키워드

참고문헌

  1. Hana Institute of Finance "Outlook and Competitive Analysis of the Domestic Wind Power Industry" Vol. 17. 2009.
  2. Kim Ji-Su, Lee Eung-Jik, Lee Chung-Sik "Best Practices Research Use of Solar Energy For Low Carbon Green City" KSES 2009 Spring Annual Conference Vol. 19. No. 1. DAEGU BEXCO.
  3. Kim Je-Ha "Photovoltaic Technology and Industry" OPTICAL SCIENCE AND TECHNOLOGY January 2012.
  4. Park won-keuw, Park Kyung-Ho "High Condensing Solar Photovoltaic Technology" OPTICAL SCIENCE AND TECHNOLOGY January 2012.
  5. Jo Dok-Ki, Kang Young-Heack "A Detailed Survey of Direct Normal Radiation and Clear-day for the Construction of Solar Concentrating System in Korea" The Korean Solar Energy Society Vol. 26. No3. 2006.
  6. Concentrator photovoltaics for solar power plants, Andreas Gombert Intersolar North America, 07/2008, San Francisco, USA Original Source: METEOTEST, www.meteonorm.com.
  7. Yizhu Guo, Jianzhong Cha "A System Modeling Method for Optimization of a Single Axis Solar Tracker" 2010 International Conference on Computer Application and System Modeling (ICCASM 2010).
  8. F. Rubio, M. Martínez, J. Perea, D. Sanchez, P. Banda "COMPARISON OF THE DIFFERENT CPV RATING PROCEDURES:REAL MEASUREMENTS IN ISFOC" 978-1-4244-2950-9/09/$25.00 ©2009 IEEE.
  9. Dezso Sera, Remus Teodorescu,Jochen Hantschel, Michael Knoll "Optimized Maximum Power Point Tracker for Fast Changing Environmental Conditions" 978-1-4244-1666-0/08/$25.00 '2008 IEEE.
  10. B. Stafford1, M. Davis1, J. Chambers1,M.Martiinez2, D. Sanchez2 "TRACKER ACCURACY: FIELD EXPERIENCE, ANALYSIS, AND CORRELATION WITH METEOROLOGICAL CONDITIONS" 978-1-4244-2950-9/09/$25.00 ©2009 IEEE.

피인용 문헌

  1. Analysis on the Domestic and International Illumination Research Trends in 2012 and Further Study Suggestion vol.27, pp.12, 2013, https://doi.org/10.5207/JIEIE.2013.27.12.028
  2. A study on the utilization status and technical development of solar tracking daylighting systems vol.25, pp.4, 2016, https://doi.org/10.5855/ENERGY.2016.25.4.062