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Güneş Enerji Potansiyeli Yüksek Bir Bölgede PVsyst Yazılımı Kullanarak PV Sistemin Tasarımı ve Performans Değerlendirmesi

Yıl 2025, Sayı: ERKEN GÖRÜNÜM, 1 - 1
https://doi.org/10.17134/khosbd.1553442

Öz

As part of the transition to renewable energy, solar energy holds a significant share among the commitments made by countries in line with zero-emission targets. This necessitates the installation of grid-connected solar energy systems across various sectors and the utilization of the energy generated from these systems in different areas. This study discusses the design considerations and performance of a 1 MWp grid-connected Photovoltaic (PV) plant at a university campus in Hakkâri, an ideal region with a high solar energy potential for solar energy production and utilization, using the PVsyst software program. In the PV system simulation, designed with approximately 6000 m² of PV installation area at Hakkâri University Zeynelbey Campus, the PVsyst software was used to analyze the performance ratio and various losses occurring in the system. The simulation results include information such as the amount of energy provided by the PV system, the amount of energy after system losses, efficiency, and performance ratio. The PV system design procedure used in this study will aid in the sizing and design of PV systems in different locations and capacities.

Kaynakça

  • [1] T.C. Enerji ve Tabii Kaynaklar Bakanlığı, https://enerji.gov.tr, ( 10.09.2024).
  • [2] Sharma, S., Kurian, C. P., & Paragond, L. S., “Solar PV system design using PVsyst: a case study of an academic Institute,” In 2018 international conference on control, power, communication and computing technologies (ICCPCCT), 123-128, 2018. doi: 10.1109/ICCPCCT.2018.8574334.
  • [3] Baqir, M., & Channi, H. K., “Analysis and design of solar PV system using PVsyst software,” Materials Today: Proceedings, vol. 48, 1332-1338, 2022. doi: 10.1016/j.matpr.2021.09.029.
  • [4] Spea, S. R., & Khattab, H. A., “Design sizing and performance analysis of stand-alone PV system using PVsyst software for a location in Egypt,” In 2019 21st International Middle East Power Systems Conference (MEPCON), 927-932, 2019. doi: 10.1109/MEPCON47431.2019.9008058
  • [5] Kumar, R., Rajoria, C. S., Sharma, A., & Suhag, S., “Design and simulation of standalone solar PV system using PVsyst Software: A case study,” Materials Today: Proceedings, vol. 46, 5322-5328, 2021. doi: 10.1016/j.matpr.2020.08.785.
  • [6] Mohammadi, S. A. D., & Gezegin, C., “Design and simulation of grid-connected solar PV system using PVsyst, PVGIS and HOMER software,” International Journal of Pioneering Technology and Engineering, vol. 1, no. 01, 36-41, 2022. doi: 10.56158/jpte.2022.24.1.01.
  • [7] Shrivastava, A., Sharma, R., Saxena, M. K., Shanmugasundaram, V., & Rinawa, M. L., “Solar energy capacity assessment and performance evaluation of a standalone PV system using PVsyst,” Materials Today: Proceedings, vol. 80, 3385-3392, 2023. doi: 10.1016/j.matpr.2021.07.258.
  • [8] Kumar, N. M., Kumar, M. R., Rejoice, P. R., & Mathew, M., “Performance analysis of 100 kWp grid connected Si-poly photovoltaic system using PVsyst simulation tool,” Energy Procedia, vol. 117, 180-189, 2017. doi: 10.1016/j.egypro.2017.05.121.
  • [9] Mishra, P. R., Rathore, S., & Jain, V., “PVSyst enabled real time evaluation of grid connected solar photovoltaic system,” International Journal of Information Technology, vol. 16, no. 2, 745-752, 2024. doi: 10.1007/s41870-023-01677-x.
  • [10] Yadav, P., Kumar, N., & Chandel, S. S., “Simulation and performance analysis of a 1 kWp photovoltaic system using PVsyst,” In 2015 International Conference on Computation of Power, Energy, Information and Communication (ICCPEIC), 0358-0363, 2015. doi: 10.1109/ICCPEIC.2015.7259481
  • [11] Ramoliya, J. V., “Performance evaluation of grid-connected solar photovoltaic plant using PVsyst software,” Journal of Emerging Technologies and Innovative Research (JETIR), vol. 2, no. 2, 7, 2015.
  • [12] Grover, A., Khosla, A., & Joshi, D., “Design and simulation of 20MW photovoltaic power plant using PVsyst,” Indonesian Journal of Electrical Engineering and Computer Science, vol. 19, no. 1 58-65, 2020. doi: 10.11591/ijeecs.v19.i1.
  • [13] Rachit, S., & Giri, V. K., “Design of grid connected PV system using PVsyst,” i-Manager's Journal on Electrical Engineering, vol. 10, 14-18, 2016.
  • [14] Siregar, Y., & Hutahuruk, Y., “Optimization design and simulating solar PV system using PVsyst software,” In 2020 4rd International Conference on Electrical, Telecommunication and Computer Engineering (ELTICOM), 219-223, 2020. doi: 10.1109/ELTICOM50775.2020.9230474.
  • [15] Alnoosani, A., Oreijah, M., Alhazmi, M., Samkari, Y., & Faqeha, H., “Design of 100 MW solar pv on-grid connected power plant using (PVsyst) in umm al-qura university,” International Journal of Science and Research (IJSR), vol. 8, no. 11, 356-363, 2019. doi: 10.21275/30101901.
  • [16] Spea, S. R., & Khattab, H. A., “Design sizing and performance analysis of stand-alone PV system using PVsyst software for a location in Egypt,” In 2019 21st International Middle East Power Systems Conference (MEPCON), 927-932, 2019. doi: 10.1109/MEPCON47431.2019.9008058.
  • [17] Satish, M., Santhosh, S., & Yadav, A., “Simulation of a Dubai based 200 KW power plant using PVsyst Software,” In 2020 7th International Conference on Signal Processing and Integrated Networks (SPIN), 824-827, 2020. doi: 10.1109/SPIN48934.2020.9071135.
  • [18] Vasanthkumar, D. S., & Naganagouda, D. H., “Design and development of 5MW solar PV grid connected power plant using PVsyst,” International Research Journal of Engineering and Technology (IRJET), vol. 4, no. 8, 778-785, 2017.
  • [19] Tallab, R., & Malek, A., “Predict system efficiency of 1 MWc photovoltaic power plant interconnected to the distribution network using PVsyst software,” In 2015 3rd International

Güneş Enerji Potansiyeli Yüksek Bir Bölgede PVsyst Yazılımı Kullanarak PV Sistemin Tasarımı ve Performans Değerlendirmesi

Yıl 2025, Sayı: ERKEN GÖRÜNÜM, 1 - 1
https://doi.org/10.17134/khosbd.1553442

Öz

Yenilenebilir Enerji’ye geçişin bir parçası olarak güneş enerjisi, sıfır emisyon hedefleri doğrultusunda ülkelerin vermiş oldukları taahhütlerin arasında önemli bir paya sahiptir. Bu’da hemen hemen her alanda özellikle şebekeye bağlı güneş enerjisiyle çalışan sistemlerin kurulmasını ve bu şekilde elde edilen enerjinin farklı noktalarda kullanılmasını gerektirir. Bu çalışma, güneş enerjisi üretimi ve kullanımı için oldukça yüksek bir güneş enerji potansiyeline sahip ideal bir bölge olan Hakkâri’de bir üniversite kampüsünde PVsyst yazılım programı kullanılarak 1 MWp şebekeye bağlı bir Fotovoltaik (PV) santralinin tasarım hususlarını ve performansını tartışmaktadır. Hakkâri Üniversitesi Zeynelbey Yerleşkesinde yaklaşık olarak 6000 m2 alan PV yerleştirme alanı olacak şekilde tasarlanan PV sistem simülasyonunda, PVsyst yazılımı, performans oranını ve sistemde meydana gelen farklı kayıpları analiz etmek için kullanılmıştır. Simülasyon sonuçları, PV sistem tarafından sağlanan enerji miktarı ile sistem kayıpları sonrasında oluşan enerji miktarını, verimliliği ve performans oranı gibi bilgileri içerir. Bu çalışmada kullanılan PV sistem tasarım prosedürü, farklı konum ve güçlerdeki PV sistemlerin boyutlandırılmasına ve tasarlanmasına yardımcı olacaktır.

Kaynakça

  • [1] T.C. Enerji ve Tabii Kaynaklar Bakanlığı, https://enerji.gov.tr, ( 10.09.2024).
  • [2] Sharma, S., Kurian, C. P., & Paragond, L. S., “Solar PV system design using PVsyst: a case study of an academic Institute,” In 2018 international conference on control, power, communication and computing technologies (ICCPCCT), 123-128, 2018. doi: 10.1109/ICCPCCT.2018.8574334.
  • [3] Baqir, M., & Channi, H. K., “Analysis and design of solar PV system using PVsyst software,” Materials Today: Proceedings, vol. 48, 1332-1338, 2022. doi: 10.1016/j.matpr.2021.09.029.
  • [4] Spea, S. R., & Khattab, H. A., “Design sizing and performance analysis of stand-alone PV system using PVsyst software for a location in Egypt,” In 2019 21st International Middle East Power Systems Conference (MEPCON), 927-932, 2019. doi: 10.1109/MEPCON47431.2019.9008058
  • [5] Kumar, R., Rajoria, C. S., Sharma, A., & Suhag, S., “Design and simulation of standalone solar PV system using PVsyst Software: A case study,” Materials Today: Proceedings, vol. 46, 5322-5328, 2021. doi: 10.1016/j.matpr.2020.08.785.
  • [6] Mohammadi, S. A. D., & Gezegin, C., “Design and simulation of grid-connected solar PV system using PVsyst, PVGIS and HOMER software,” International Journal of Pioneering Technology and Engineering, vol. 1, no. 01, 36-41, 2022. doi: 10.56158/jpte.2022.24.1.01.
  • [7] Shrivastava, A., Sharma, R., Saxena, M. K., Shanmugasundaram, V., & Rinawa, M. L., “Solar energy capacity assessment and performance evaluation of a standalone PV system using PVsyst,” Materials Today: Proceedings, vol. 80, 3385-3392, 2023. doi: 10.1016/j.matpr.2021.07.258.
  • [8] Kumar, N. M., Kumar, M. R., Rejoice, P. R., & Mathew, M., “Performance analysis of 100 kWp grid connected Si-poly photovoltaic system using PVsyst simulation tool,” Energy Procedia, vol. 117, 180-189, 2017. doi: 10.1016/j.egypro.2017.05.121.
  • [9] Mishra, P. R., Rathore, S., & Jain, V., “PVSyst enabled real time evaluation of grid connected solar photovoltaic system,” International Journal of Information Technology, vol. 16, no. 2, 745-752, 2024. doi: 10.1007/s41870-023-01677-x.
  • [10] Yadav, P., Kumar, N., & Chandel, S. S., “Simulation and performance analysis of a 1 kWp photovoltaic system using PVsyst,” In 2015 International Conference on Computation of Power, Energy, Information and Communication (ICCPEIC), 0358-0363, 2015. doi: 10.1109/ICCPEIC.2015.7259481
  • [11] Ramoliya, J. V., “Performance evaluation of grid-connected solar photovoltaic plant using PVsyst software,” Journal of Emerging Technologies and Innovative Research (JETIR), vol. 2, no. 2, 7, 2015.
  • [12] Grover, A., Khosla, A., & Joshi, D., “Design and simulation of 20MW photovoltaic power plant using PVsyst,” Indonesian Journal of Electrical Engineering and Computer Science, vol. 19, no. 1 58-65, 2020. doi: 10.11591/ijeecs.v19.i1.
  • [13] Rachit, S., & Giri, V. K., “Design of grid connected PV system using PVsyst,” i-Manager's Journal on Electrical Engineering, vol. 10, 14-18, 2016.
  • [14] Siregar, Y., & Hutahuruk, Y., “Optimization design and simulating solar PV system using PVsyst software,” In 2020 4rd International Conference on Electrical, Telecommunication and Computer Engineering (ELTICOM), 219-223, 2020. doi: 10.1109/ELTICOM50775.2020.9230474.
  • [15] Alnoosani, A., Oreijah, M., Alhazmi, M., Samkari, Y., & Faqeha, H., “Design of 100 MW solar pv on-grid connected power plant using (PVsyst) in umm al-qura university,” International Journal of Science and Research (IJSR), vol. 8, no. 11, 356-363, 2019. doi: 10.21275/30101901.
  • [16] Spea, S. R., & Khattab, H. A., “Design sizing and performance analysis of stand-alone PV system using PVsyst software for a location in Egypt,” In 2019 21st International Middle East Power Systems Conference (MEPCON), 927-932, 2019. doi: 10.1109/MEPCON47431.2019.9008058.
  • [17] Satish, M., Santhosh, S., & Yadav, A., “Simulation of a Dubai based 200 KW power plant using PVsyst Software,” In 2020 7th International Conference on Signal Processing and Integrated Networks (SPIN), 824-827, 2020. doi: 10.1109/SPIN48934.2020.9071135.
  • [18] Vasanthkumar, D. S., & Naganagouda, D. H., “Design and development of 5MW solar PV grid connected power plant using PVsyst,” International Research Journal of Engineering and Technology (IRJET), vol. 4, no. 8, 778-785, 2017.
  • [19] Tallab, R., & Malek, A., “Predict system efficiency of 1 MWc photovoltaic power plant interconnected to the distribution network using PVsyst software,” In 2015 3rd International
Toplam 19 adet kaynakça vardır.

Ayrıntılar

Birincil Dil Türkçe
Konular Elektronik, Sensörler ve Dijital Donanım (Diğer)
Bölüm Makaleler
Yazarlar

Erşan Ömer Yüzer 0000-0002-9089-1358

Erken Görünüm Tarihi 19 Ocak 2025
Yayımlanma Tarihi
Gönderilme Tarihi 20 Eylül 2024
Kabul Tarihi 4 Ekim 2024
Yayımlandığı Sayı Yıl 2025 Sayı: ERKEN GÖRÜNÜM

Kaynak Göster

IEEE E. Ö. Yüzer, “Güneş Enerji Potansiyeli Yüksek Bir Bölgede PVsyst Yazılımı Kullanarak PV Sistemin Tasarımı ve Performans Değerlendirmesi”, Savunma Bilimleri Dergisi, sy. ERKEN GÖRÜNÜM, ss. 1–1, Ocak 2025, doi: 10.17134/khosbd.1553442.