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Analysis of solar power public street lighting optimization with Pvsyst software in a residential complex area

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The duration of street light illumination on solar-powered public street lighting is often short-lived (decreased Tlol) due to exposure to near shading (loss irradiance) of 8.89% in residential complexes. Therefore, optimization of PV panels and battery components through PVsyst software simulation analysis is required. The simulation results after optimization showed that the PV array obtained 205 wp and a battery capacity of 62 ah (2 days of autonomy), resulting in a decrease in Tlol of 765 hours. While the Performance Ratio (PR) is 67.6%, there is an increase of 7.7%, and the sulfuric ratio is 93.6%, there is an increase in the energy supplied to users by 12.74% or 33.36 kWh.
Rocznik
Strony
743--749
Opis fizyczny
Bibliogr. 20 poz., tab., rys., fot.
Bibliografia
  • [1] R. Rachchh, M. Kumar, and B. Tripathi, “Solar photovoltaic system design optimization by shading analysis to maximize energy generation from limited urban area,” Energy Convers Manag, vol. 115, pp. 244-252, 2016. https://doi.org/10.1016/j.enconman.2016.02.059.
  • [2] A. Alharbi, Z. Awwad, A. Habib, and O. de Weck, “Economical sizing and multi-azimuth layout optimization of grid-connected rooftop photovoltaic systems using Mixed-Integer Programming,” Appl Energy, vol. 335, p. 120654, 2023. https://doi.org/10.1016/j.apenergy.2023.120654.
  • [3] B. R. Elhab et al., “Optimizing tilt angles and orientations of solar panels for Kuala Lumpur, Malaysia,” Scientific Research and Essays, vol. 7, no. 42, pp. 3758-3765, 2012. https://doi.org/10.5897/SRE12.241.
  • [4] A. Adriansyah, S. Budiyanto, J. Andika, A. Romadlan, and N. Nurdin, “Public street lighting control and monitoring system using the internet of things,” in AIP Conference Proceedings, AIP Publishing, 2020. https://doi.org/10.1063/5.0000594.
  • [5] G. P. N. Hakim, A. Firdausi, M. Alaydrus, and S. Budiyanto, “Dynamic traffic light timing control system using fuzzy TOPSIS algorithm,” in IOP Conference Series: Materials Science and Engineering, IOP Publishing, 2018, p. 012063. https://doi.org/10.1088/1757-899X/453/1/012063.
  • [6] A. C. Duman and Ö. Güler, “Techno-economic analysis of off-grid photovoltaic LED road lighting systems: A case study for northern, central and southern regions of Turkey,” Build Environ, vol. 156, pp. 89-98, 2019. https://doi.org/10.1016/j.buildenv.2019.04.005.
  • [7] S. Alsadi and T. Khatib, “Photovoltaic power systems optimization research status: A review of criteria, constrains, models, techniques, and software tools,” Applied Sciences, vol. 8, no. 10, p. 1761, 2018. https://doi.org/10.3390/app8101761.
  • [8] M. Alramlawi and P. Li, “Design optimization of a residential PV-battery microgrid with a detailed battery lifetime estimation model,” IEEE Trans Ind Appl, vol. 56, no. 2, 2020. https://doi.org/10.1109/TIA.2020.2965894.
  • [9] M. Tahani, N. Babayan, and A. Pouyaei, “Optimization of PV/Wind/Battery stand-alone system, using hybrid FPA/SA algorithm and CFD simulation, case study: Tehran,” Energy Convers Manag, vol. 106, pp. 644-659, 2015. https://doi.org/10.1016/j.enconman.2015.10.011.
  • [10] H. Hamouche and M. M. Shabat, “Sizing of a photovoltaic LED street lighting system with PVsyst software,” in 2019 IEEE 7th Palestinian International Conference on Electrical and Computer Engineering (PICECE), IEEE, 2019, pp. 1-5. https://doi.org/10.1109/PICECE.2019.8747207.
  • [11] D. Cho and J. Valenzuela, “Optimization of residential off-grid PV-battery systems,” Solar Energy, vol. 208, pp. 766-777, 2020. https://doi.org/10.1016/j.solener.2020.08.023.
  • [12] A. Setiawan, S. H. Susilo, E. Faizal, and R. Monasari, “Training and Installation of Solar Power Public Street Lighting for Karang Taruna at Bareng Village Klojen Malang Districs,” International Journal of Community Engagement Payungi, vol. 2, no. 1, pp. 1-6, 2022. https://doi.org/10.58879/ijcep.v2i1.15.
  • [13] C. Sun, X. Zhao, B. Qi, W. Xiao, and H. Zhang, “Economic and environmental analysis of coupled PV-energy storage-charging station considering location and scale,” Appl Energy, vol. 328, p. 119680, 2022. https://doi.org/10.1016/j.apenergy.2022.119680.
  • [14] H. Mosbah, E. C. Guerra, and J. L. C. Barrera, “Maximizing the Electricity Cost-Savings for Local Distribution System Using a New Peak-Shaving Approach Based on Mixed Integer Linear Programming,” Electronics (Basel), vol. 11, no. 21, p. 3610, 2022. https://doi.org/10.3390/electronics11213610.
  • [15] D. Akindipe, O. W. Olawale, and R. Bujko, “Techno-economic and social aspects of smart street lighting for small cities-A case study,” Sustain Cities Soc, vol. 84, p. 103989, 2022. https://doi.org/10.1016/j.scs.2022.103989
  • [16] S. Budiyanto et al., “Design of control and monitoring tools for electricity use loads, and home security systems with internet of things system based on Arduino Mega 2560,” in IOP Conference Series: Materials Science and Engineering, IOP Publishing, 2020, p. 012020. https://doi.org/10.1088/1757-899X/909/1/012020.
  • [17] L. M. Silalahi, S. Budiyanto, F. A. Silaban, I. U. V. Simanjuntak, A. D. Rochendi, and G. Osman, “Optimizing The Performance Of The Power Station Generator Space Lighting System Performance Based On Internet Of Things Using ESP32,” in 2021 3rd International Conference on Research and Academic Community Services (ICRACOS), IEEE, 2021, pp. 219-224. https://doi.org/10.1109/ICRACOS53680.2021.9702010.
  • [18] A. Kaddour, L. Benmebrouk, S. A. Bekkouche, B. Benyoucef, S. Bezari, and R. Khenniche, “Improvement of the stand-alone PV system performance by PVSYST software,” in 2019 7th International Renewable and Sustainable Energy Conference (IRSEC), IEEE, 2019, pp. 1-6. https://doi.org/10.1109/IRSEC48032.2019.9078290.
  • [19] Kementerian Energi dan Sumber Daya Mineral Republik Indonesia, Buku Panduan Pengoperasian dan Pemeliharaan PLTS Off-Grid, 1st ed., vol. 1. Jakarta: Kementerian Energi dan Sumber Daya Mineral Republik Indonesia, 2017. Accessed: Aug. 10, 2023. [Online]. Available: https://drive.esdm.go.id/wl/?id=4vf12RYGUetuu22Pe4cKt68lrRkAr9z0
  • [20] M. A. Gumintang, M. F. Sofyan, and I. Sulaeman, “Design and Control of PV Hybrid System in Practice,” Deutsche Gesellschaft für Internationale Zusammenarbeit (GIZ) GmbH: Jakarta, Indonesia, 2020.
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa nr POPUL/SP/0154/2024/02 w ramach programu "Społeczna odpowiedzialność nauki II" - moduł: Popularyzacja nauki (2025).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-28d34cd7-aa42-4e41-ad7e-9583ec1ce3f0
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