Araştırma Makalesi
BibTex RIS Kaynak Göster

Şebekeden bağımsız hibrit sistemin (rüzgar-fotovoltaik) performans analizi

Yıl 2019, Cilt: 25 Sayı: 5, 571 - 576, 21.10.2019

Öz

Hibrit
enerji sistem tasarımında fotovoltaik panel, rüzgar türbini ve akülerin
boyutlandırılması en önemli araştırma konusudur. Literatürde hybrid
yenilenebilir enerji sistemlerinin boyutlandırılmasında farklı yaklaşımlar
kullanan çok sayıda çalışma bulunmaktadır. Bu çalışmada, kurulan bir hibrit
sistemin deneysel ve simülasyon sonuçları arasındaki farklılıklar ortaya
konmuştur Yıldız Teknik Üniversite’sinde kurulan sistem 600 W rüzgar türbini,
2x320 W fotovoltaik panel ve 4x210 Ah akü içermektedir. Maksimum güç noktası
takip kontrol cihazı, hibrit kontrolcü ve inverter sırasıyla panel, türbin ve
çıkış gücü kontrolü için kullanılmıştır. Hava istasyonu rüzgar hızı, sıcaklık,
ışınım gibi hava verilerini kaydetmek için ve veri kaydedici de elektriksel
büyüklükleri kayıt altına almak için kullanılmıştır. Sistem kullanılan
bileşenlerin katalog bilgilerine göre modellenmiştir ve modelleme sonuçları ile
uygulama sonuçları karşılaştırılmıştır.

Kaynakça

  • Park H, Kim YJ, Kim H. “PV cell model by single-diode electrical equivalent circuit”. Journal of Electrical Engineering and Technology, 11(5), 1323-1331, 2016.
  • Global Wind Energy Council. “Global wind statistics 2016”. Brussels, Belgium, 2017.
  • International Energy Agency. “Renewable energy outlook-World energy outlook 2013”. 197-232, 2013.
  • European Photovoltaic Industry. “Global market outlook for photovoltaics”. Brussels, Belgium, 2014.
  • Fara L, Moraru AG, Sterian P, Bobei P, Diaconu A, Fara S. “Building Integrated Photovoltaic (BIPV) systems in Romania. Monitoring, modelling and experimental validation”. Journal of Optoelectronics and Advanced Materials, 15(1), 125-130, 2013.
  • Aktas A, Ozdemir E, Karakaya A, Ucar M. “Operation and performance of grid-connected solar photovoltaic power system in Kocaeli University”. Journal of Optoelectronics and Advanced Materials, 15(5), 559-564, 2013.
  • Ghitas A, Mageed HA, El-Rifate A, Schlosser V, Sabry M. “Validation of a new measuring system for performance evaluation of a large module in a desert area”. Journal of Optoelectronics and Advanced Materials, 15(5), 565-570, 2013.
  • Cubukcu M, Colak M. “Modeling, comparative simulation and practical performance analysis of a stand-alone PV hybrid power system in Turkey”. Journal of Optoelectronics and Advanced Materials, 15(3), 352-360, 2013.
  • El Fathi A, Nkhaili L, Bennouna A, Outzourhit A. “Performance parameters of a standalone PV plant”. Energy Conversion and Management, 86, 490-495, 2014.
  • Semaoui S, Arab AH, Bacha S, Azoui B. “Optimal sizing of a stand-alone photovoltaic system with energy management in isolated areas”. Energy Procedia, 36, 358-368, 2013.
  • Mezzai N, Rekioua D, Rekioua T, Mohammedi A, Idjdarane K, Bacha S. “Modeling of hybrid photovoltaic/ wind/fuel cells power system”. International Journal of Hydrogen Energy, 39(27), 15158-15168, 2014.
  • Sukchai S, Sirisamphanwong C. “Optimization of stand-alone PV-FC hybrid system under Thailand climate”. Energy Procedia, 56, 309-317, 2014.
  • Behzadi MS, Niasati M. “Comparative performance analysis of a hybrid PV/FC/battery stand-alone system using different power management strategies and sizing approaches”. International Journal of Hydrogen Energy, 40(1), 538-548, 2015.
  • Cano A, Jurado F, Sanchez H, Fernandez LM, Castaneda M. “Optimal sizing of stand-alone hybrid systems based on PV/WT/FC by using several methodologies”. Journal of Energy Institute, 87, 330-340, 2014.
  • Laurentiu F, Dan C. “Output analysis of stand-alone pv systems: Modeling, simulation and control”. Energy Procedia, 112, 595-605, 2017.
  • Drouichea I, Harrounia S, Arab AH. “A new approach for modelling the aging PV module upon experimental I–V curves by combining translation method and five-parameters model”. Electric Power Systems Research, 163(A), 231-241, 2018.
  • Evans SP, Bradney DR, Clausen PD. “Development and experimental verification of a 5 kW small wind turbine aeroelastic model”. Journal of Wind Engineering and Industrial Aerodynamics, 181, 104-111, 2018.
  • Yenilenebilir Enerji Genel Müdürlüğü. “İstanbul İli Rüzgar Kaynak Bilgileri”. http://www.yegm.gov.tr/YEKrepa/ISTANBUL-REPA.pdf (18.09.2018).
  • Yenilenebilir Enerji Genel Müdürlüğü. “Güneş enerjisi Potansiyel Atlası”. http://www.yegm.gov.tr/MyCalculator/pages/34.aspx (18.09.2018).

Performance analysis of stand-alone hybrid (wind-photovoltaic) energy system

Yıl 2019, Cilt: 25 Sayı: 5, 571 - 576, 21.10.2019

Öz

Sizing of PV panel, wind turbine and storage
batteries in hybrid energy systems is the most important research topic for a
system design. There are many studies in the literature, using different
approaches about sizing of hybrid renewable energy systems. In this study,
experimental and simulation performance differences of the installed hybrid
system are presented. The system that is installed in Yildiz Technical University,
has 600 W wind turbine, 2x320 W photovoltaic (PV) panel group and 4x210 Ah
batteries. A maximum power point tracking (MPPT) controller, a hybrid
controller and an inverter are utilized to control the panels, wind turbine and
power flow. A weather station is used to measure the weather conditions such as
wind speed, temperature, radiation, and electrical quantities are recorded by a
data logger. The system is modelled depending on the datasheets of the
components, and the modelling results are compared with experimental results.

Kaynakça

  • Park H, Kim YJ, Kim H. “PV cell model by single-diode electrical equivalent circuit”. Journal of Electrical Engineering and Technology, 11(5), 1323-1331, 2016.
  • Global Wind Energy Council. “Global wind statistics 2016”. Brussels, Belgium, 2017.
  • International Energy Agency. “Renewable energy outlook-World energy outlook 2013”. 197-232, 2013.
  • European Photovoltaic Industry. “Global market outlook for photovoltaics”. Brussels, Belgium, 2014.
  • Fara L, Moraru AG, Sterian P, Bobei P, Diaconu A, Fara S. “Building Integrated Photovoltaic (BIPV) systems in Romania. Monitoring, modelling and experimental validation”. Journal of Optoelectronics and Advanced Materials, 15(1), 125-130, 2013.
  • Aktas A, Ozdemir E, Karakaya A, Ucar M. “Operation and performance of grid-connected solar photovoltaic power system in Kocaeli University”. Journal of Optoelectronics and Advanced Materials, 15(5), 559-564, 2013.
  • Ghitas A, Mageed HA, El-Rifate A, Schlosser V, Sabry M. “Validation of a new measuring system for performance evaluation of a large module in a desert area”. Journal of Optoelectronics and Advanced Materials, 15(5), 565-570, 2013.
  • Cubukcu M, Colak M. “Modeling, comparative simulation and practical performance analysis of a stand-alone PV hybrid power system in Turkey”. Journal of Optoelectronics and Advanced Materials, 15(3), 352-360, 2013.
  • El Fathi A, Nkhaili L, Bennouna A, Outzourhit A. “Performance parameters of a standalone PV plant”. Energy Conversion and Management, 86, 490-495, 2014.
  • Semaoui S, Arab AH, Bacha S, Azoui B. “Optimal sizing of a stand-alone photovoltaic system with energy management in isolated areas”. Energy Procedia, 36, 358-368, 2013.
  • Mezzai N, Rekioua D, Rekioua T, Mohammedi A, Idjdarane K, Bacha S. “Modeling of hybrid photovoltaic/ wind/fuel cells power system”. International Journal of Hydrogen Energy, 39(27), 15158-15168, 2014.
  • Sukchai S, Sirisamphanwong C. “Optimization of stand-alone PV-FC hybrid system under Thailand climate”. Energy Procedia, 56, 309-317, 2014.
  • Behzadi MS, Niasati M. “Comparative performance analysis of a hybrid PV/FC/battery stand-alone system using different power management strategies and sizing approaches”. International Journal of Hydrogen Energy, 40(1), 538-548, 2015.
  • Cano A, Jurado F, Sanchez H, Fernandez LM, Castaneda M. “Optimal sizing of stand-alone hybrid systems based on PV/WT/FC by using several methodologies”. Journal of Energy Institute, 87, 330-340, 2014.
  • Laurentiu F, Dan C. “Output analysis of stand-alone pv systems: Modeling, simulation and control”. Energy Procedia, 112, 595-605, 2017.
  • Drouichea I, Harrounia S, Arab AH. “A new approach for modelling the aging PV module upon experimental I–V curves by combining translation method and five-parameters model”. Electric Power Systems Research, 163(A), 231-241, 2018.
  • Evans SP, Bradney DR, Clausen PD. “Development and experimental verification of a 5 kW small wind turbine aeroelastic model”. Journal of Wind Engineering and Industrial Aerodynamics, 181, 104-111, 2018.
  • Yenilenebilir Enerji Genel Müdürlüğü. “İstanbul İli Rüzgar Kaynak Bilgileri”. http://www.yegm.gov.tr/YEKrepa/ISTANBUL-REPA.pdf (18.09.2018).
  • Yenilenebilir Enerji Genel Müdürlüğü. “Güneş enerjisi Potansiyel Atlası”. http://www.yegm.gov.tr/MyCalculator/pages/34.aspx (18.09.2018).
Toplam 19 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular Mühendislik
Bölüm Makale
Yazarlar

Oktay Arıkan

Evren İşen Bu kişi benim

Bedri Kekezoğlu

Yayımlanma Tarihi 21 Ekim 2019
Yayımlandığı Sayı Yıl 2019 Cilt: 25 Sayı: 5

Kaynak Göster

APA Arıkan, O., İşen, E., & Kekezoğlu, B. (2019). Performance analysis of stand-alone hybrid (wind-photovoltaic) energy system. Pamukkale Üniversitesi Mühendislik Bilimleri Dergisi, 25(5), 571-576.
AMA Arıkan O, İşen E, Kekezoğlu B. Performance analysis of stand-alone hybrid (wind-photovoltaic) energy system. Pamukkale Üniversitesi Mühendislik Bilimleri Dergisi. Ekim 2019;25(5):571-576.
Chicago Arıkan, Oktay, Evren İşen, ve Bedri Kekezoğlu. “Performance Analysis of Stand-Alone Hybrid (wind-Photovoltaic) Energy System”. Pamukkale Üniversitesi Mühendislik Bilimleri Dergisi 25, sy. 5 (Ekim 2019): 571-76.
EndNote Arıkan O, İşen E, Kekezoğlu B (01 Ekim 2019) Performance analysis of stand-alone hybrid (wind-photovoltaic) energy system. Pamukkale Üniversitesi Mühendislik Bilimleri Dergisi 25 5 571–576.
IEEE O. Arıkan, E. İşen, ve B. Kekezoğlu, “Performance analysis of stand-alone hybrid (wind-photovoltaic) energy system”, Pamukkale Üniversitesi Mühendislik Bilimleri Dergisi, c. 25, sy. 5, ss. 571–576, 2019.
ISNAD Arıkan, Oktay vd. “Performance Analysis of Stand-Alone Hybrid (wind-Photovoltaic) Energy System”. Pamukkale Üniversitesi Mühendislik Bilimleri Dergisi 25/5 (Ekim 2019), 571-576.
JAMA Arıkan O, İşen E, Kekezoğlu B. Performance analysis of stand-alone hybrid (wind-photovoltaic) energy system. Pamukkale Üniversitesi Mühendislik Bilimleri Dergisi. 2019;25:571–576.
MLA Arıkan, Oktay vd. “Performance Analysis of Stand-Alone Hybrid (wind-Photovoltaic) Energy System”. Pamukkale Üniversitesi Mühendislik Bilimleri Dergisi, c. 25, sy. 5, 2019, ss. 571-6.
Vancouver Arıkan O, İşen E, Kekezoğlu B. Performance analysis of stand-alone hybrid (wind-photovoltaic) energy system. Pamukkale Üniversitesi Mühendislik Bilimleri Dergisi. 2019;25(5):571-6.





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