DESAIN BUCKBOOST CONVERTER DENGAN MPPT P&O UNTUK MENDAPATKAN DAYA OPTIMAL AKIBAT PERUBAHAN ARUS DAN TEGANGAN
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A. J. Forsyth and S. V. Mollov, “Modelling and control of DC-DC converters,” Power Eng. J., vol. 12, no. 5, pp. 229–236, 1998, doi: 10.1049/pe:19980507.
A. Maulidiyah, A. Parastiwi, and D. Dewatama, “Perancangan dan Realisasi Buck & Boost Converter Menggunakan Algoritma Maximum Power Point Tracker dengan Kontrol Fuzzy Logic pada Pembangkit Listrik Tenaga Surya,” J. Elektron. dan Otomasi Ind., vol. 4, no. 1, p. 30, 2020, doi: 10.33795/elkolind.v4i1.105.
M. L. Azad, S. Das, P. Kumar Sadhu, B. Satpati, A. Gupta, and P. Arvind, “P&O algorithm based MPPT technique for solar PV system under different weather conditions,” Proc. IEEE Int. Conf. Circuit, Power Comput. Technol. ICCPCT 2017, pp. 0–4, 2017, doi: 10.1109/ICCPCT.2017.8074225.
D. Dewatama, M. Fauziyah, and H. K. Safitri, “Optimasi Buck Converter Pada Solar Tree Menggunakan Kontrol Logika Fuzzy,” J. Eltek, vol. 15, no. 02, pp. 36–51, 2017, [Online]. Available: https://elkolind.polinema.ac.id/index.php/eltek/article/view/117%0Ahttps://elkolind.polinema.ac.id/index.php/eltek/article/download/117/102
O. Melfazen, M. T. Alawity, and D. Dewatama, “Firefly Algorithm For Optimizing Single Axis Solar Tracker,” Kinet. Game Technol. Inf. Syst. Comput. Network, Comput. Electron. Control, vol. 4, pp. 1–8, 2021, doi: 10.22219/kinetik.v6i4.1338.
D. C. Bani, M. Pu, and H. Suryoatmojo, “¬MPPT Pada Sistem PV Menggunakan Algoritma Firefly dan Modified P&O dengan Konverter Hybrid Cuk terkoneksi ke Grid Satu Phasa di Bawah Kondisi Partial Shaded,” J. Tek. ITS, vol. 5, no. 2, 2016, doi: 10.12962/j23373539.v5i2.16055.
H. Buntulayuk, F. A. Samman, and Y. Yusran, “Rancangan DC-DC Converter untuk Penguatan Tegangan,” J. Penelit. Enj., vol. 21, no. 2, pp. 78–82, 2018, doi: 10.25042/jpe.112017.12.
S. Diusti Dwi Putri and Aswardi, “Rancang Bangun Buck-Boost Converter menggunakan Kendali PID,” Jtev (Jurnal Tek. Elektro Dan Vokasional), vol. 06, no. 02, pp. 258–272, 2020, [Online]. Available: http://ejournal.unp.ac.id/index.php/jtev/index
D. Almanda and P. G. Chamdareno, “Perbandingan Kinerja Konverter Buck Boost Dan Konverter Sepic Sebagai Charger Baterai Berbasis Panel Surya,” Semin. Nas. Sains dan Teknol., pp. 2017–2020, 2019.
Adithya Yudha Perdana, “Analisis Efisiensi Solar Charger Controller Tipe,” Unnes Repostory, vol. 18, p. 16, 2020.
I. A. Perdana, D. Dewatama, and S. Subiyantoro, “Desain dan Implementasi Maximum Power Point Tracking (MPPT) menggunakan Topologi Sepic Pada Solar Panel dengan Metode P&O,” J. Elektron. dan Otomasi Ind., vol. 8, no. 2, p. 133, 2021, doi: 10.33795/elk.v8i2.284.
A. Fauzi, M. Facta, and S. Sudjadi, “Perencanaan Maximum Power Point Tracking (Mppt) Dengan Metode Perturb and Observe Pada Panel Surya,” Transient, vol. 7, no. 4, p. 918, 2019, doi: 10.14710/transient.7.4.918-924.
A. Al-diab and C. Sourkounis, “Variable Step Size P & O MPPT Algorithm for PV Systems,” pp. 1097–1102, 2010.
A. S. Hiwale, M. V Patil, and H. Vinchurkar, “An Efficient MPPT Solar Charge Controller”.
N. Syahputra L., “Efisiensi Daya Keluaran Generator Photovoltaic (GPV) Menggunakan Maximum Power Point Tracking (MPPT) Dengan Algoritma Perturb And Obserb (P&O) Dan Mppt Standart Reference,” pp. 4–16, 2019.
A. Kusumaningrum, “Penggunaan Buck Boost Converter Pada Sistem Battery Charging Terkendali,” Skripsi, pp. 1–103, 2016.
M. A. Abdourraziq, M. Ouassaid, M. Maaroufi, and S. Abdourraziq, “Modified P&O MPPT technique for photovoltaic systems,” Proc. 2013 Int. Conf. Renew. Energy Res. Appl. ICRERA 2013, no. October, pp. 728–733, 2013, doi: 10.1109/ICRERA.2013.6749849.
Solana, “Datasheet panel surya Polycristalline 100 WP.”
A. Fitriandi, E. Komalasari, and H. Gusmedi, “Rancang Bangun Alat Monitoring Arus dan Tegangan Berbeasis Mikrokontroler,” J. Rekayasa dan Teknol. Elektro, vol. 10, no. 2, 2016.
N. Sudrajat, K. Kananda, D. Hidayar, and T. Nugroho, “PERANCANGAN DC-DC CONVERTER BERBASIS BUCK CONVERTER DENGAN MIKROKONTROLLER ARDUINO PADA PENGAPLIKASIAN BATTERY CHARGER Program Studi Teknik Elektro Institut Teknologi Sumatera , Indonesia”.
P. Summary, “IR2110( - 1 - 2)(S)PbF/IR2113( - 1 - 2)(S)PbF HIGH AND LOW SIDE DRIVER,” vol. 2110, pp. 1–18.
W. : Www, D. Choudhary, and A. R. Saxena, “International Journal of Emerging Technology and Advanced Engineering DC-DC Buck-Converter for MPPT of PV System,” Certif. J., vol. 9001, no. 7, pp. 813–821, 2008, [Online]. Available: www.ijetae.com
P. Sahu, D. Verma, and S. Nema, “Physical Design and Modelling of Boost Converter systems,” 2016 Int. Conf. Electr. Power Energy Syst., pp. 10–15, 2018, [Online]. Available: https://ieeexplore.ieee.org/document/7915898
S. Sholapur, K. R. Mohan, and T. R. Narsimhegowda, “Boost Converter Topology for PV System with Perturb And Observe MPPT Algorithm,” IOSR J. Electr. Electron. Eng., vol. 9, no. 4, pp. 50–56, 2014, doi: 10.9790/1676-09425056.
C. Rachman and F. N. Budiman, “Rancang Bangun Konverter Buck Boost dengan Sistem Monitoring Berbasis Labview,” 2018.
E. Kabalci, “Design and Implementation of a PI-MPPT Based Buck-Boost Converter,” 2015.
V. Jaya and Sujono, “Perancangan Maximum Power Point Tracking ( MPPT ) Pada Turbin Angin PMSG Kapasitas 300 Watt Dengan Algoritma Fuzzy,” J. Maest., vol. 1, no. 2, pp. 323–329, 2018.
T. Sulis, F. Fathoni, and R. Putri, “Optimasi Sistem Photovoltaik Menggunakan Cuk Konverter Berbasis Simple Perturb and Observe Method,” J. Appl. Smart Electr. Netw. Syst., vol. 2, no. 01, pp. 24–29, 2021, doi: 10.52158/jasens.v2i01.190.
DOI: https://doi.org/10.32487/jtt.v11i2.1780
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