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Autonomous Photovoltaic Solar Cell Using Tracking System Design and Implementation

Yıl 2019, Cilt: 9 Sayı: 2, 1669 - 1676, 01.04.2019

Öz

Nowadays with the rapidly evolving technology, the need for sustainable and clean energy has become evident due to the inadequacy of existing resources or the damage caused by these resources. It is
aimed by all countries that the minimum effect of these resources on the environment and maximum efficiency. This situation makes renewable energy sources valuable and this study, a solar tracking system was designed and prototyped in servo motor control with the help of photoresistors which will serve as a sensor to increase the energy capacities produced by solar panels.

Kaynakça

  • [1] Kelly, Nelson A., and Thomas L. Gibson. "Improved photovoltaic energy output for cloudy conditions with a solar tracking system." Solar Energy 83.11 (2009): 2092-2102.
  • [2] Chong, K. K., and C. W. Wong. "General formula for on-axis sun-tracking system and its application in improving tracking accuracy of solar collector." Solar Energy 83.3 (2009): 298-305.
  • [3] Abdallah, S., and O. O. Badran. "Sun tracking system for productivity enhancement of solar still." Desalination 220.1-3 (2008): 669-676.
  • [4] Abdallah, Salah, and Salem Nijmeh. "Two axes sun tracking system with PLC control." Energy conversion and management45.11-12 (2004): 1931-1939.
  • [5] Huang, B. J., and F. S. Sun. "Feasibility study of one axis three positions tracking solar PV with low concentration ratio reflector." Energy conversion and management 48.4 (2007): 1273-1280.
  • [6] Abu-Khader, Mazen M., Omar O. Badran, and Salah Abdallah. "Evaluating multi-axes sun-tracking system at different modes of operation in Jordan." Renewable and sustainable energy reviews12.3 (2008): 864-873.
  • [7] Diken, Ö. "Fotovoltaik ünite tasarımı, elektrik enerjisi üretimi ve maliyet analizi." YTÜ Fen (2000).
  • [8] Altın, V. "Güneş Pillerinin Yapısı ve Çalışması." Bilim ve Teknik Dergisi 464 (2006): 41.
  • [9] Microchip Inc., “PIC16F87X Datasheet,” www.microchip.com, (Erişim zamanı; Şubat, 8, 2018).
Yıl 2019, Cilt: 9 Sayı: 2, 1669 - 1676, 01.04.2019

Öz

Kaynakça

  • [1] Kelly, Nelson A., and Thomas L. Gibson. "Improved photovoltaic energy output for cloudy conditions with a solar tracking system." Solar Energy 83.11 (2009): 2092-2102.
  • [2] Chong, K. K., and C. W. Wong. "General formula for on-axis sun-tracking system and its application in improving tracking accuracy of solar collector." Solar Energy 83.3 (2009): 298-305.
  • [3] Abdallah, S., and O. O. Badran. "Sun tracking system for productivity enhancement of solar still." Desalination 220.1-3 (2008): 669-676.
  • [4] Abdallah, Salah, and Salem Nijmeh. "Two axes sun tracking system with PLC control." Energy conversion and management45.11-12 (2004): 1931-1939.
  • [5] Huang, B. J., and F. S. Sun. "Feasibility study of one axis three positions tracking solar PV with low concentration ratio reflector." Energy conversion and management 48.4 (2007): 1273-1280.
  • [6] Abu-Khader, Mazen M., Omar O. Badran, and Salah Abdallah. "Evaluating multi-axes sun-tracking system at different modes of operation in Jordan." Renewable and sustainable energy reviews12.3 (2008): 864-873.
  • [7] Diken, Ö. "Fotovoltaik ünite tasarımı, elektrik enerjisi üretimi ve maliyet analizi." YTÜ Fen (2000).
  • [8] Altın, V. "Güneş Pillerinin Yapısı ve Çalışması." Bilim ve Teknik Dergisi 464 (2006): 41.
  • [9] Microchip Inc., “PIC16F87X Datasheet,” www.microchip.com, (Erişim zamanı; Şubat, 8, 2018).
Toplam 9 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular Mühendislik
Bölüm Makaleler
Yazarlar

Metin Bilgin Bu kişi benim

Kübra Çelebi Bu kişi benim

Yayımlanma Tarihi 1 Nisan 2019
Yayımlandığı Sayı Yıl 2019 Cilt: 9 Sayı: 2

Kaynak Göster

APA Bilgin, M., & Çelebi, K. (2019). Autonomous Photovoltaic Solar Cell Using Tracking System Design and Implementation. International Journal of Electronics Mechanical and Mechatronics Engineering, 9(2), 1669-1676.