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DAFTAR PUSTAKA

[1] N. Wang, M. Jin, Z. Wang, and M. Cheng, “Optimization of Photovoltaic MPPT System Efficiency Based on Combined Algorithm,” ICEMS 2018 - 2018 21st Int. Conf. Electr. Mach. Syst., pp. 1122–1126, 2018, doi:

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Optimization of Photovoltaic MPPT System Efficiency Based on Combined Algorithm | 2018 21st International Conference on Electrical Machines and Systems (ICEMS) (acm.org)

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A comprehensive review and classified comparison of MPPT algorithms in PV systems | SpringerLink

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[6] A. Chandran, V. Reshmi, and B. K. Mathew, “Comparative analysis of PO and FLC based SEPIC boost converter for solar PV application,” Proc. 3rd Int. Conf. Smart Syst. Inven. Technol. ICSSIT 2020, no. Icssit, pp. 616–621, 2020, doi: 10.1109/ICSSIT48917.2020.9214263.

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[7] D. Haji and N. Genc, “Fuzzy and PO Based MPPT Controllers under Different Conditions,” 7th Int. IEEE Conf. Renew. Energy Res. Appl.

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2021 1st Int. Conf. Adv. Electr. Comput. Commun. Sustain. Technol.

ICAECT 2021, 2021, doi: 10.1109/ICAECT49130.2021.9392426.

Design and Development of Solar Charge Controller by Implementing two different MPPT Algorithm | IEEE Conference Publication | IEEE Xplore [9] S. Bhattacharyya, D. S. Kumar P, S. Samanta, and S. Mishra, “Steady output

and fast tracking MPPT (SOFT-MPPT) for P&O and InC algorithms,” IEEE Trans. Sustain. Energy, vol. 12, no. 1, pp. 293–302, 2021, doi:

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Steady Output and Fast Tracking MPPT (SOFT-MPPT) for P&O and InC Algorithms | IEEE Journals & Magazine | IEEE Xplore

[10] A. Mohapatra, B. Nayak, and C. Saiprakash, “Adaptive Perturb Observe MPPT for PV System with Experimental Validation,” 1st IEEE Int. Conf.

Sustain. Energy Technol. Syst. ICSETS 2019, no. 1, pp. 257–261, 2019, doi:

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Adaptive Perturb & Observe MPPT for PV System with Experimental Validation | Semantic Scholar

[11] T. Wang, “Design of Stand-Alone Photovoltaic System Based on Maximum Power Point Tracking,” 2018 IEEE 4th Int. Conf. Comput. Commun., 2018, doi: https://doi.org/10.1109/CompComm.2018.8780975.

Design of Stand-Alone Photovoltaic System Based on Maximum Power Point Tracking (researchgate.net)

[12] M. Azab, “DC power optimizer for PV modules using SEPIC converter,”

2017 5th IEEE Int. Conf. Smart Energy Grid Eng. SEGE 2017, pp. 74–78, 2017, doi: 10.1109/SEGE.2017.8052779.

(PDF) DC power optimizer for PV modules using SEPIC converter (researchgate.net)

[13] B. B. Baliwant, A. R. Gothane, and V. B. Waghmare, “Hardware Implementation of DC-DC SEPIC Converter for Applications of Renewable Energy Using PWM Based Charge Controller,” Proc. 3rd Int. Conf.

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Electron. Commun. Aerosp. Technol. ICECA 2019, pp. 562–565, 2019, doi:

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Hardware Implementation of DC-DC SEPIC Converter For Applications of Renewable Energy Using PWM Based Charge Controller | IEEE Conference Publication | IEEE Xplore

[14] S. Kumar, R. Kumar, and N. Singh, “Performance of closed loop SEPIC converter with DC-DC converter for solar energy system,” 2017 4th Int.

Conf. Power, Control Embed. Syst. ICPCES 2017, vol. 2017-Janua, no. 1, pp. 1–6, 2017, doi: 10.1109/ICPCES.2017.8117668.

Performance of closed loop SEPIC converter with DC-DC converter for solar energy system | IEEE Conference Publication | IEEE Xplore

[15] U. Jayashree, R. H. P. Nightingale, and S. Divya, “Implementation of basic MPPT techniques for zeta converter,” ICONSTEM 2017 - Proc. 3rd IEEE Int. Conf. Sci. Technol. Eng. Manag., vol. 2018-Janua, pp. 601–604, 2017, doi: 10.1109/ICONSTEM.2017.8261393.

Implementation of basic MPPT techniques for zeta converter | IEEE Conference Publication | IEEE Xplore

[16] I. Sudiharto, Y. C. Arif, H. Eko H.s., F. D. Murdianto, and A. T. Prasetyo,

“Design and implementation SEPIC converter using pi controller for solution power quality improvement,” Proc. - 2019 5th Int. Conf. Sci. Technol. ICST 2019, pp. 1–5, 2019, doi: 10.1109/ICST47872.2019.9166349.

Design and Implementation SEPIC Converter Using PI Controller for Solution Power Quality Improvement | IEEE Conference Publication | IEEE Xplore

[17] S. R. Hole and A. Das Goswami, “Maintain Maximum Power Point Tracking of Photovoltaic using SEPIC Converter,” 2022 2nd Int. Conf. Power Electron. IoT Appl. Renew. Energy its Control. PARC 2022, no. March, pp.

0–6, 2022, doi: 10.1109/PARC52418.2022.9726607.

Maintain Maximum Power Point Tracking of Photovoltaic using SEPIC Converter | IEEE Conference Publication | IEEE Xplore

[18] L. H. Pratomo and S. Riyadi, “Desain dan Implementasi Algoritma Korelasi Daya dan Tegangan di Kapasitor untuk Maximum Power Point Trackking pada Photovoltaic Menggunakan Arduino Uno,” J. Tek. Elektro, vol. 12, no.

1, pp. 9–16, 2020, doi: 10.15294/jte.v12i1.23481.

Desain dan Implementasi Algoritma Korelasi Daya dan Tegangan di Kapasitor untuk Maximum Power Point Trackking pada Photovoltaic Menggunakan Arduino Uno | ScienceGate

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[19] L. H. Pratomo, “Performance Analysis of Parallel PV Modules Using an MPPT Charge Controller,” Proc. - 2021 Int. Semin. Appl. Technol. Inf.

Commun. IT Oppor. Creat. Digit. Innov. Commun. within Glob. Pandemic,

iSemantic 2021, pp. 167–172, 2021, doi:

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Performance Analysis of Parallel PV Modules Using an MPPT Charge Controller | IEEE Conference Publication | IEEE Xplore

[20] M. Mohamed, B. Bouziane, and D. Abdelhak, “Photovoltaic Generator modeling based on Look Up Table approach and implementation on STM32F407 board of the Perturb&Observe algorithm based MPPT,” 2018 Int. Conf. Appl. Smart Syst., no. November, pp. 1–7, 2018, doi:

https://doi.org/10.1109/ICASS.2018.8652000.

Photovoltaic Generator modeling based on Look Up Table approach and implementation on STM32F407 board of the Perturb&Observe algorithm based MPPT | IEEE Conference Publication | IEEE Xplore

[21] S. Motahhir, A. El Ghzizal, S. Sebti, and A. Derouich, “MIL and SIL and PIL tests for MPPT algorithm,” Cogent Eng., vol. 4, no. 1, 2017, doi:

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Photovoltaic Generator modeling based on Look Up Table approach and implementation on STM32F407 board of the Perturb&Observe algorithm based MPPT | IEEE Conference Publication | IEEE Xplore

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