Metode Charging Constant Current Constant Voltage Baterai Li-Po

Authors

  • Wasith Dany Mufty Universitas Muhammadiyah Gresik
  • Alfi Zuhriya Khoirunnisaa Universitas Muhammadiyah Gresik

DOI:

https://doi.org/10.37859/jst.v13i1.11544
Keywords: Baterai, Buck converter, Li-Po, SoC

Abstract

The use of renewable energy has experienced significant developments, especially solar panel technology. Due to the unstable nature of solar energy sources, an energy storage system is needed to maintain the continuity of power supply in the form of batteries. One type of battery is the Lithium Polymer (Li-Po) battery, which is often used because it has a high energy density and good work efficiency. However, over time the battery capacity will decrease so it needs to be charged. When charging, there is a risk of overcharging, so the Constant Current Constant Voltage (CC-CV) charging method is needed. This method is usually combined with a Proportional-Integral (PI) controller to regulate the Buck converter output through signal adjustments so that the current and voltage match the desired values. The use of the combination of the CC-CV method and PI control allows real-time regulation of charging parameters based on the battery's State of Charge (SoC) conditions, thereby extending battery life and improving the safety of solar panel-based energy storage systems.

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References

Satiawan, I N.W., Supriono, Citarsa, I.B.F, “Desain Buck converter Untuk Charging Batere pada Beban Bervariasi,” Dielektrika Vol 5 No 1,30-35. 2018

Mahardika, Bhaskara Wisnu, Trias Andromeda, dan Sudjadi. "Perancangan Sistem Charging Baterai Menggunakan DC-DC Buck converter Metode Constant Current (CC) dan Constant Voltage (CV)." Transient: Jurnal Ilmiah Teknik Elektro, vol. 9, no. 3, 2020

Widhiawan, Benekdiktus Angger Wahyu, Susatyo Handoko, dan Darjat. "Perancangan Sistem Charging Baterai Menggunakan Buck-Boost Converter dengan Sumber Panel Surya Berbasis Mikrokontroler Arduino Nano." Transient: Jurnal Ilmiah Teknik Elektro, vol. 10, no. 1, 2021

Husnaini, I., & Krismadinata, “Komparasi Pengendali PI dan PID untuk Tegangan Keluaran Konverter Buck Jurnal Nasional Teknik Elektro Vol 6 No 3,143-151.2017

Sadewo, R.A., Kurniawan, E., Adam, K.B “Perancangan dan Implementasi Pengisian Baterai Lead Acid Menggunakan Solar Cell dengan Menggunakan Metode Three Steps Chaging,” e-Proceeding of Engineering Vol 4 No 1, 26-35.2017

Febrianto, A., Sunanda,W., Gusa, R.F “Penerangan Jalan Umum Tenaga Surya:Studi kasus di Kota Pangkalpinang,” Jurnal Presipitasi Vol 16 No 2, 33-39.2019.

V.-B. Vu, D.-H. Tran, dan W. Choi, ““Implementation of the Constant Current and Constant Voltage Charge of Inductive Power Transfer Systems With the Double-Sided LCC Compensation Topology for Electric Vehicle Battery Charge Applications”, IEEE Transactions on Power Electronics, vol. 33, no. 9, hlm. 7398–7410, Sep 2018.

D. W. Hart. “Power Electronic”, New York: McGraw - Hill Companies, Inc, 2002.

Baiturrohmah, Siti, and Alfi Zuhriya Khoirunnisaa. "Design and Development of a Non-Invasive Blood Glucose Level Measurement Device Based on Arduino Uno and Near-Infrared (NIR) Sensor." Circuit: Jurnal Ilmiah Pendidikan Teknik Elektro 10.1 (2026): 40-55.

Mawalid, Moch Asyroful, et al. "Classification of EEG signal for detecting cybersickness through time domain feature extraction using Naïve Bayes." 2018 international conference on computer engineering, network and intelligent multimedia (CENIM). IEEE, 2018.

Y. Liu, X. Zhang, and J. Wang, "A Review of Lithium-Ion Battery Charging Methods and Control Strategies," Journal of Energy Storage, vol. 52, pp. 104-120, 2022. DOI: 10.1016/j.est.2022.104120

J. Schmalstieg, S. Käbitz, M. Ecker, and D. U. Sauer, "A Holistic Aging Model for Li-Ion Batteries," Journal of Power Sources, vol. 257, pp. 325-334, 2021. DOI: 10.1016/j.jpowsour.2021.02.012.

S. Kouro, M. Malinowski, K. Gopakumar, et al., "Recent Advances and Industrial Applications of Multilevel Converters," IEEE Transactions on Industrial Electronics, vol. 57, no. 8, pp. 2553-2580, 2020. DOI: 10.1109/TIE.2010.2049719.

A. Khaligh and Z. Li, "Battery, Ultracapacitor, Fuel Cell, and Hybrid Energy Storage Systems for Electric, Hybrid Electric, Fuel Cell, and Plug-In Hybrid Electric Vehicles: State of the Art," IEEE Transactions on Vehicular Technology, vol. 59, no. 6, pp. 2806-2814, 2021. DOI: 10.1109/TVT.2021.2070797

I. Sudiharto, E. Wahjono, dan L. N. F. Rhamadani, “Design and Simulation of Utilization of Solar Cells as Battery Chargers CC-CV (Constant Current–Constant Voltage) Method with Fuzzy Control,” Kinetik, vol. 7, no. 2, pp. 153–162, 2022, doi:10.22219/kinetik.v7i2.1448.

Sutedjo, R. Rakhmawati, B. P. P. Putih, A. F. Adila, Irianto, dan D. S. Yanaratri, “Design Battery Charger With CC-CV Method for Series Connected Lithium-Ion Batteries Using Fuzzy Logic Controller,” Journal on Advanced Research in Electrical Engineering (JAREE), vol. 9, no. 1, 2025, doi:10.12962/jaree.v9i1.389.

A. I. Yustikasari, E. Sunarno, dan P. A. M. Putra, “Desain dan Simulasi Buck Konverter Dengan Kontrol Logika Fuzzy untuk Pengisian Baterai,” Jurnal Ecotipe, vol. 8, no. 2, 2021, doi:10.33019/jurnalecotipe.v8i2.2389.

Suryoatmojo, H., “Design Li-Po Battery Charger with Buck Converter under Partially CC-CV Method,” Proceedings of ISITIA 2020, pp. 101–106, 2020, doi:10.1109/ISITIA49792.2020.9163754.

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Published

2026-06-17

How to Cite

[1]
W. . Dany Mufty and A. Z. . Khoirunnisaa, “Metode Charging Constant Current Constant Voltage Baterai Li-Po”, JST, vol. 13, no. 1, pp. 196–203, Jun. 2026.

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Section

Research Article