Designing PLTS and PLTB Prototype with IoT Based Monitoring System
Perancangan Prototype PLTS dan PLTB dengan System Monitoring Berbasis IoT
DOI:
https://doi.org/10.21070/ups.8599Keywords:
ESP32 Microcontroller, INA219, PLTSAbstract
The design of this IoT-based PLTS and PLTB Monitoring System Prototype was created to obtain a prototype capable of monitoring voltage and current.the
power values generated by PLTB and PLTS. The data obtained from the sensors will be displayed on an LCD and Android device.Designing a prototype Solar Power Plant(SPP) and Wind Power Plant (WPP) that can be monitored in real time through the application.The results off the current monitoring test for the PLTS prototype showed an average accuracy of 98.2% and an average voltage
accuracy of 97.8% using 10 samples. For PLTB current monitoring, the average accuracy was 96.78% and the voltage accuracy was 99.62%. From the the above results, it can be conclude that the current and voltage measurements obtained from the INA219 sensor displayed on the LCD and Android are not the same,depending on the sensitivity and precision levels of the measurement sensor.
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H. Abdillah, T. Asrori, M. A. Baihaqi, D. H. T. Prasetyo, and A. Muhammad, “Sistem Monitoring dan Manajemen Energi pada Pembangkit Hybrid PLTS, PLTB, dan PLN berbasis Internet of Things,” JASIEK (Jurnal Apl. Sains, Informasi, Elektron. dan Komputer), vol. 5, no. 2, pp. 41–50, 2023, doi: 10.26905/jasiek.v5i2.10920.
B. Winardi, A. Nugroho, and E. Dolphina, “Perencanaan Dan Analisis Ekonomi Pembangkit Listrik Tenaga Surya (PLTS) Terpusat Untuk Desa Mandiri,” J. Tekno, vol. 16, no. 2, pp. 1–11, 2019, doi: 10.33557/jtekno.v16i1.603.
Mirza Mirza, Rakhmad Syafutra Lubis, and Mansur Gapy, “Pemanfaatan Alternator Sebagai Pembangkit Listrik Tenaga Bayu (PLTB),” J. Komputer, Inf. Teknol. dan Elektro, vol. Vol. 4, No, no. 4, pp. 2252–7036, 2019.
A. Gusmao, “Desain Kontrol Pembangkit Listrik Hibrid Tenaga Surya, Tenaga Angin dan Baterai,” JTEV (Jurnal Tek. Elektro dan Vokasional), vol. 5, no. 1.1, pp. 163–165, 2019.
D. Hidayanti and G. Dewangga, “Rancang Bangun Pembangkit Hybrid Tenaga Angin dan Surya dengan Penggerak Otomatis pada Panel Surya,” Eksergi, vol. 15, no. 3, p. 93, 2020, doi: 10.32497/eksergi.v15i3.1784.
S. Syahrorini and D. Hadidjaja, “Aplikasi Alat Ukur Partikulat Dan Suhu Berbasis Iot,” Dinamik, vol. 25, no. 1, pp. 1–9, 2020, doi: 10.35315/dinamik.v25i1.7512.
M. A. Sahuri, D. Hadidjaja, A. Wisaksono, and J. Jamaaluddin, “Rancang Bangun Alat Monitoring Kondisi Suhu Tubuh Dan Jantung Pasien Saat Perawatan Berbasis Internet of Things (Iot),” Dinamik, vol. 26, no. 2, pp. 68–79, 2021, doi: 10.35315/dinamik.v26i2.8691.
S. Sigit and F. Setiawan, “Alat Monitoring Transformator Menggunakan Metode Tracking Berbasis Arduino Pada Pt. Pln,” J. CERITA, vol. 4, no. 2, pp. 190–200, 2018, doi: 10.33050/cerita.v4i2.643.
D. P. Nanggala, “Prototipe Perangkap Biawak Otomatis untuk Kolam Ikan Nila Berbasis Smartphone Smartphone-based Automatic Monitor Lizard Trap Prototype for Tilapia Fish Ponds,” vol. 7, pp. 133–140, 2025.
Y. Apriani, “Monitoring Arus dan Tegangan Pembangkit Listrik Tenaga Surya Menggunakan Internet Off Things,” JATISI (Jurnal Tek. Inform. dan Sist. Informasi), vol. 8, no. 2, pp. 889–895, 2021, doi: 10.35957/jatisi.v8i2.543.
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