Araştırma Makalesi

Assessing the feasibility of off-grid photovoltaic systems for rural electrification

Cilt: 10 Sayı: 2 31 Aralık 2023
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Assessing the feasibility of off-grid photovoltaic systems for rural electrification

Öz

In this investigation, the absence of an electricity grid in numerous locations, including military bases, tiny houses, and chalets, prompted the development of a model for providing electrical energy through an off-grid Photovoltaic (PV) system in Konya, Türkiye. The study delineates the daily energy consumption of a residential dwelling as 39,974 Wh/day, and the feasibility of satisfying this demand through the implementation of a 9.45 kWp PV system is scrutinized. The research encompasses the determination of optimal tilt and azimuth angles set at 35° and 0°, respectively. The maximum global effective irradiation intensity, recorded in August at 208.3 kWh/m², contrasts with the minimum intensity observed in December, registering at 106.2 kWh/m². Likewise, electricity production attained its zenith in August at 1,581.3 kWh, starkly contrasting its lowest level in December at 791 kWh. Modelling outcomes conclude that Solar Fraction (SF) values equate to unity during summer but fall below unity during winter. Furthermore, a surplus in electricity generation relative to demand is observed during the summer, resulting in the full charge of batteries. Evaluating the annual average SF, it is deduced that the modelled system fulfils 90.8% of the energy requirement. The Performance Ratio (PR), an additional pivotal parameter in PV systems, reaches its zenith at 0.865 in November and its nadir at 0.614 in August. This comprehensive study underscores the efficacy of the modelled off-grid PV system in meeting the energy demands of the selected residence, emphasizing the significance of seasonal variations and key performance metrics in assessing system performance.

Anahtar Kelimeler

Kaynakça

  1. Baurzhan, S. and Jenkins, G.P. 2016. Off-grid solar PV: Is it an affordable or appropriate solution for rural electrification in Sub-Saharan African countries? Renewable and Sustainable Energy Reviews. 60, 1405-1418.
  2. Aksoy, M.H., Çiylez, İ., and Ispir, M. 2022. Effect of Azimuth Angle on The Performance of a Small-Scale on-Grid PV System. Türk Doğa ve Fen Dergisi. 11(4), 42-49.
  3. Younas, U., Akdemir, B., and Kulaksiz, A.A. 2019. Modeling and simulation of a grid-connected PV system under varying environmental conditions. International Journal of Energy Applications and Technologies. 6(1), 17-23.
  4. Sansaniwal, S.K., Sharma, V., and Mathur, J. 2018. Energy and exergy analyses of various typical solar energy applications: A comprehensive review. Renewable and Sustainable Energy Reviews. 82, 1576-1601.
  5. Hichem, L., Amar, O., and Leila, M. 2023. Optimized ANN-fuzzy MPPT controller for a stand-alone PV system under fast-changing atmospheric conditions. Bulletin of Electrical Engineering and Informatics. 12(4), 1960-1981.
  6. Jonnalagadda, V., Sugavanam, K., Mohanasundaram, K., Kuppuswamy, C., Bhukya, R., and Kadali, K.S. 2021. Modified zeta converter based on ANFIS controller using MPPT PV system. Journal of Physics: Conference Series, 1916(1), 012126.
  7. Turan, V., Karakuş, C., and Üstün, İ. 2023. Installation of solar power plant in Adıyaman region and analysis of solar energy potential. International Journal of Energy Applications and Technologies. 10(1), 21-25.
  8. Ahmet, N. and Buğutekin, A. 2017. Solar PV System cost analysis for a smart home. International Journal of Energy Applications and Technologies. 4(4), 152-163.

Ayrıntılar

Birincil Dil

İngilizce

Konular

Enerji, Güneş Enerjisi Sistemleri, Yenilenebilir Enerji Sistemleri

Bölüm

Araştırma Makalesi

Yayımlanma Tarihi

31 Aralık 2023

Gönderilme Tarihi

28 Kasım 2023

Kabul Tarihi

31 Aralık 2023

Yayımlandığı Sayı

Yıl 2023 Cilt: 10 Sayı: 2

Kaynak Göster

APA
İspir, M., & Aksoy, M. H. (2023). Assessing the feasibility of off-grid photovoltaic systems for rural electrification. International Journal of Energy Applications and Technologies, 10(2), 74-79. https://doi.org/10.31593/ijeat.1397386
AMA
1.İspir M, Aksoy MH. Assessing the feasibility of off-grid photovoltaic systems for rural electrification. International Journal of Energy Applications and Technologies. 2023;10(2):74-79. doi:10.31593/ijeat.1397386
Chicago
İspir, Murat, ve Muharrem Hilmi Aksoy. 2023. “Assessing the feasibility of off-grid photovoltaic systems for rural electrification”. International Journal of Energy Applications and Technologies 10 (2): 74-79. https://doi.org/10.31593/ijeat.1397386.
EndNote
İspir M, Aksoy MH (01 Aralık 2023) Assessing the feasibility of off-grid photovoltaic systems for rural electrification. International Journal of Energy Applications and Technologies 10 2 74–79.
IEEE
[1]M. İspir ve M. H. Aksoy, “Assessing the feasibility of off-grid photovoltaic systems for rural electrification”, International Journal of Energy Applications and Technologies, c. 10, sy 2, ss. 74–79, Ara. 2023, doi: 10.31593/ijeat.1397386.
ISNAD
İspir, Murat - Aksoy, Muharrem Hilmi. “Assessing the feasibility of off-grid photovoltaic systems for rural electrification”. International Journal of Energy Applications and Technologies 10/2 (01 Aralık 2023): 74-79. https://doi.org/10.31593/ijeat.1397386.
JAMA
1.İspir M, Aksoy MH. Assessing the feasibility of off-grid photovoltaic systems for rural electrification. International Journal of Energy Applications and Technologies. 2023;10:74–79.
MLA
İspir, Murat, ve Muharrem Hilmi Aksoy. “Assessing the feasibility of off-grid photovoltaic systems for rural electrification”. International Journal of Energy Applications and Technologies, c. 10, sy 2, Aralık 2023, ss. 74-79, doi:10.31593/ijeat.1397386.
Vancouver
1.Murat İspir, Muharrem Hilmi Aksoy. Assessing the feasibility of off-grid photovoltaic systems for rural electrification. International Journal of Energy Applications and Technologies. 01 Aralık 2023;10(2):74-9. doi:10.31593/ijeat.1397386

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