Evaluasi Degradasi dan Performa Panel Surya Multikristal di Kondisi Iklim Tropis dengan Translasi IEC 60891

Penulis

  • Imam Faried Assalam Politeknik Bosowa
  • Umar Muhammad Politeknik Bosowa
  • Irvawansyah Irvawansyah

DOI:

https://doi.org/10.61141/joule.v5i1.631

Kata Kunci:

Degradation, IEC 60891, Linier Regression, Multicrystalline, Performance

Abstrak

Every year, solar panels experience a decline in production, so it is necessary to evaluate the degradation and performance of multicrystalline silicon (mc-Si) solar panels in tropical climate conditions. This research uses SEAWARD PV 200 (Complete Kit) to measure solar panel output data, which is then analyzed using the translation method according to IEC 60891 Procedure 1 to determine Standard Test Conditions (STC). The translational results showed a solar panel degradation rate of ±1.16% per year. Performance evaluation using the linear regression method revealed that a tropical climate that increases the temperature of the solar panel increases the percentage of degradation, where every 1°C increase in temperature causes an increase in degradation of approximately ±0.15%. 

Referensi

Green, M. A. (2019). "Solar cell efficiency tables (version 54)." Progress in Photovoltaics: Research and Applications, 27(7), 565–575

Chander, S., Purohit, A., Sharma, A., Arvind, A., Nehra, S. P., & Dhaka, M. S. (2015). "A study on photovoltaic parameters of mono-crystalline silicon solar cell with cell temperature." Energy Reports, 1, 104–109

Kumar, R., Singh, A. R., & Baredar, P. (2017). "A review on uncertainties in solar photovoltaic applications." Renewable and Sustainable Energy Reviews, 77, 1092–1102

Green, M. A., Dunlop, E. D., Hohl‐Ebinger, J., Yoshita, M., Kopidakis, N., & Hao, X. (2021). "Solar cell efficiency tables (Version 57)." Progress in Photovoltaics: Research and Applications, 29(1), 3–15

Jordan, D. C., & Kurtz, S. R. (2013). "Photovoltaic degradation rates—an analytical review." Progress in Photovoltaics: Research and Applications, 21(1), 12–29

Meyer, E. L., & van Dyk, E. E. (2004). "Assessing the reliability and degradation of photovoltaic module performance parameters." Renewable Energy, 29(5), 703–712

Rohatgi, A., Sharma, A., & Upadhyay, P. (2020). "Long-term performance and degradation of crystalline silicon photovoltaic modules in tropical climate." Solar Energy Materials and Solar Cells, 207, 110322

Sukardi, A., & Sari, I. P. (2022). Pengaruh Suhu Terhadap Efisiensi Panel Surya Berbasis Silikon di Wilayah Tropis. Optika: Jurnal Teknik Elektro dan Informatika, 15(2), 45-54. Diakses dari https://e-journal.uniflor.ac.id/index.php/optika/article/download/3284/2063/13233

PT Bumi Teknologi Internasional. (2023). Iklim Ekstrem dan Tantangan Panel Surya di Indonesia. BTI Energy. Diakses dari https://www.btienergy.id/iklim-ekstrim-dan-tantangan-panel-surya-di-indonesia/

Chander, S., Purohit, A., Sharma, A., Arvind, A., Nehra, S. P., & Dhaka, M. S. (2015). "A study on photovoltaic parameters of mono-crystalline silicon solar cell with cell temperature." Energy Reports, 1, 104–109

Kumar, N. M., & Ramesh, R. (2019). "Performance analysis of solar photovoltaic modules under tropical conditions." Renewable Energy Focus, 30, 5–11

Reis, V., Istrate, I. M., & Boudaden, J. (2017). "Degradation mechanisms of photovoltaic panels." Renewable Energy Reviews, 74, 177–189

Jordan, D. C., & Kurtz, S. R. (2013). "Photovoltaic degradation rates—an analytical review." Progress in Photovoltaics: Research and Applications, 21(1), 12–29

K. Kananda and R. Nazir., Konsep pengaturan aliran daya untuk PLTS tersambung ke sistem grid pada rumah tinggal, Jurnal Nasional Teknik Elektro, vol. II, pp. 65-71

Salazar, April & Macabebe, Erees Queen., Hotspots detection in photovoltaic modules using infrared thermography. MATEC Web of Conferences

IEC 60891:2021. Photovoltaic Devices - Procedures for Temperature and Irradiance Corrections to Measured I-V Characteristics. International Electrotechnical Commission, 2021

Duffie, J. A., & Beckman, W. A. (2020). Solar Engineering of Thermal Processes. 5th Edition. Wiley

Green, M. A. (1998). Solar Cells: Operating Principles, Technology, and System Applications. UNSW Pres

Montgomery, D. C., Peck, E. A., & Vining, G. G. (2021). Introduction to Linear Regression Analysis. 6th Edition. Wiley

Duffie, J. A., & Beckman, W. A. (2020). Solar Engineering of Thermal Processes. 5th Edition. Wiley

Kutner, M. H., Nachtsheim, C. J., & Neter, J. (2004). Applied Linear Regression Models. 4th Edition. McGraw-Hill

##submission.downloads##

Diterbitkan

2024-02-29

Cara Mengutip

Assalam, I. F., Muhammad, U., & Irvawansyah, I. (2024). Evaluasi Degradasi dan Performa Panel Surya Multikristal di Kondisi Iklim Tropis dengan Translasi IEC 60891. JouLE (Journal of Electrical Engineering, 5(1), 28–35. https://doi.org/10.61141/joule.v5i1.631

Terbitan

Bagian

Artikel

Artikel paling banyak dibaca berdasarkan penulis yang sama

> >>