Real-Time Monitoring of Solar Battery and Lamp Conditions Using Internet of Things

DOI: https://doi.org/10.33650/jeecom.v8i1.16851
Authors

(1) * Affan Bachri   (Universitas Islam Lamongan)  
        Indonesia
(2)  Arief Budi Laksono   (Universitas Islam Lamongan)  
        Indonesia
(3)  Eko Wahyu Santoso   (Universitas Islam Lamongan)  
        Indonesia
(4)  Achmad Rifqi Adi Firmansyah   (Universitas Islam Lamongan)  
        Indonesia
(*) Corresponding Author

Abstract


Solar photovoltaic battery systems require continuous observation to prevent unnoticed voltage decline, abnormal temperature, and lamp failure. This study developed a compact Internet of Things monitoring prototype using an ESP32 microcontroller, an INA219 sensor for voltage, current, and power, an LM35 sensor for battery temperature, and a light-dependent resistor for lamp-state detection. Sensor data were shown locally on a 16x2 liquid-crystal display and transmitted through Wi-Fi to a Blynk dashboard at a five-second update interval. The study applied experimental and engineering research procedures covering hardware design, software integration, component validation, and integrated tests under off, three load, and charging conditions. The INA219 achieved average accuracies of 99.69% for voltage, 99.32% for current, and 99.49% for power, while the LM35 reached 97.08% accuracy. The light sensor correctly separated the tested off condition at 3 lux from lamp-on conditions between 230 and 2100 lux. Across all operating modes, the local display and Blynk presented consistent measurements, and negative current reliably indicated charging. The prototype therefore provides accessible real-time monitoring of battery electrical behavior, temperature, charging direction, and lamp status, although long-term data logging and field-scale validation remain necessary.


Keywords

solar; battery; real-time; monitoring; Internet of Things; ESP32; INA219; Blynk



Full Text: PDF



References


M. Marhatang, M. Yunus, Y. Sonong, S. Lewi, R. Tandioga, and M. R. Djalal, “Rancang bangun prototipe solar home system menggunakan baterai lithium sebagai penyimpan energi,” Journal of Electrical Engineering and Technology, vol. 5, no. 1, 2024.

B. Zurifqyaldi, T. Hasanuddin, and T. Zulfadli, “Perancangan sistem monitoring arus dan tegangan menggunakan IoT pada PLTS off grid,” Jurnal Tektro, vol. 9, no. 2, pp. 115-122, 2025.

R. Rahmaniar, K. Khairul, and A. Junaidi, “Model dan analisis modul photovoltaic dengan variasi iradiasi dan temperatur menggunakan teknologi simulasi,” Procedia of Engineering and Life Science, vol. 4, 2023, doi: 10.21070/pels.v4i0.1386.

M. Y. Maulana, B. P. Jati, and I. Widihastuti, “Analisa perbandingan efisiensi konversi energi antara PV monocrystalline 50 WP dan polycrystalline 50 WP pada berbagai intensitas cahaya,” Jurnal Teknik Elektro, vol. 7, no. 2, pp. 1-7, 2024, doi: 10.30651/cl.v7i02.21821.

F. Khairurrizal, P. Neipa, D. Purnamasari, M. Ulum, and D. Fitri, “Smart monitoring sistem panel surya berbasis Internet of Things,” Jurnal Teknik Industri, vol. 7, no. 1, pp. 1-4, 2024.

E. Kurnia, M. Pandia, B. S. B. Sembiring, and D. Margaretta, “Pemanfaatan Internet of Things pada smarthome dengan model simulasi prototype,” Jurnal Ilmu Komputer dan Sistem Informasi, vol. 7, no. 1, pp. 112-115, 2024, doi: 10.55338/jikomsi.v7i1.2728.

A. B. Lasera and I. H. Wahyudi, “Pengembangan prototipe sistem pengontrolan daya listrik berbasis IoT ESP32 pada smart home system,” Jurnal Sistem Informasi, vol. 6, no. 1, pp. 45-52, 2020.

L. Ariesta Wenno, B. J. Waworuntu, S. N. Rumokoy, H. G. Kaunang, and S. B. Dodie, “Konsep pemanfaatan teknologi IoT berbasis ESP32 untuk sakelar cerdas pada sistem PLTS rakit rumah apung,” Jurnal Elektrik, vol. 4, no. 2, pp. 1-9, 2025.

M. Irfan, D. Suryadi, and M. Saleh, “Rancang bangun sistem monitoring baterai serta besaran fisis sepeda listrik berbasis IoT,” Journal of Electrical Engineering, Energy, and Information Technology, vol. 11, no. 1, 2023.

Y. Badruzzaman, A. B. Vernandez, S. T. Nursaputro, P. D. Larasati, E. A. Karuniawan, and A. I. Qodd, “Rancang bangun sistem monitoring solar panel rooftop dengan pendingin menggunakan mikrokontroler berbasis IoT,” Majalah Ilmiah Pengembangan Rekayasa dan Sosial, vol. 20, pp. 266-271, 2024.

B. D. Waluyo, S. Rahman, M. A. Sinaga, N. Lubis, A. A. Tarigan, and S. V. B. Tarigan, “Sistem monitoring PLTS berbasis IoT sebagai media pembelajaran,” Jurnal Teknologi Informasi dan Komunikasi dalam Pendidikan, vol. 11, no. 1, pp. 21-26, 2024, doi: 10.24114/jtikp.v11i1.60282.

J. Lianda, M. Afridon, M. Zamhuri, D. Fitriana, and G. Eviani, “Sistem pemantauan kapasitas baterai pada mobil listrik berbasis Internet of Things,” in Seminar Nasional Industri dan Teknologi, 2024, pp. 197-222.

A. A. S. Pradana, N. Hendrarini, and D. R. Suchendra, “Sistem monitoring baterai berbasis IoT menggunakan Blynk IoT,” Jurnal Teknik Elektro, vol. 10, no. 3, pp. 765-771, 2024.

F. Puspasari and T. P. Satya, “Analysis of the INA219 sensor system and voltage divider on a calibrated multimeter,” Jurnal Fisika dan Aplikasinya, vol. 20, no. 2, p. 48, 2024, doi: 10.12962/j24604682.v20i2.21600.

R. D. Yulianto, S. I. Haryudo, L. Rakhmawati, and T. Rijanto, “Perancangan dan pembuatan prototype water spray pembersih panel surya berbasis Internet of Things,” Transmisi: Jurnal Ilmiah Teknik Elektro, vol. 26, no. 3, pp. 139-146, 2024, doi: 10.14710/transmisi.26.3.139-146.

D. S. Marspinta, Y. Abimanyu, R. Febriyanti, Sudarti, and K. Mahmudi, “Analisis konsep gelombang cahaya pada kinerja sensor light dependent resistor untuk pengukuran intensitas cahaya pada tanaman,” Jurnal Agro Indragiri, vol. 10, no. 1, pp. 32-38, 2025.

S. N. Fataha, “Perancangan alat pengukur suhu air laut dengan sensor LM35,” PROtek: Jurnal Ilmiah Teknik Elektro, vol. 6, no. 1, pp. 12-14, 2019, doi: 10.33387/protk.v6i1.1013.

F. A. Perdana, “Baterai lithium,” INKUIRI: Jurnal Pendidikan IPA, vol. 9, no. 2, p. 113, 2021, doi: 10.20961/inkuiri.v9i2.50082.

W. Aminah, R. A. Dalimunthe, and R. Aulia, “Rancang bangun sistem pengisi baterai mobil listrik berbasis Arduino Uno,” Jurnal Elektro, vol. 2, no. 2, pp. 103-112, 2022, doi: 10.33330/jutsi.v2i2.1692.

Endryansyah, B. Suprianto, and P. W. Rusimamto, “Rancang bangun sistem kontrol tracking panel surya dengan metode fuzzy logic controller berbasis ESP32,” Jurnal Teknik Elektro, vol. 11, no. 1, pp. 126-135, 2022.

T. Darwin and Y. Kurnia, “Simulasi sistem keamanan kendaraan roda dua dengan smartphone dan GPS menggunakan Arduino,” Jurnal Algor, vol. 1, no. 2, 2020.

F. Mas’ud and Fatahillah, “Rancang bangun sistem monitoring pengisian aki berbasis mikrokontroler untuk mendeteksi tegangan dan arus secara otomatis,” Jurnal Media Elektronika, vol. 1, no. 2, pp. 52-63, 2025.


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10.33650/jeecom.v8i1.16851


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Copyright (c) 2026 Affan Bachri, arief Budi Laksono, Eko Wahyu Santoso, Achmad Rifqi Adi Firmansyah

 
This work is licensed under a Creative Commons Attribution License (CC BY-SA 4.0)

Journal of Electrical Engineering and Computer (JEECOM)
Published by LP3M Nurul Jadid University, Indonesia, Probolinggo, East Java, Indonesia.