IoT-based PLTS Energy Management for Automatic Water Pump and Valve Design in Hydroponics
Manajemen Energi PLTS untuk Perancangan Pompa Air Otomatis dan Valve Pada Hidroponik Berbasis IoT
DOI:
https://doi.org/10.21070/ups.4675Keywords:
ADS1115, Hydroponic, Management, Solar Panel, Water PumpAbstract
The diminishing agricultural land due to residential and industrial conversion necessitates innovative horticultural cultivation methods like hydroponics on limited spaces. This study presents advancements in utilizing Internet of Things (IoT) technology for remote monitoring and control of water pumps via mobile phones. The experimental setup includes an ESP32 microcontroller, an ADS1115 module for current and voltage measurements from solar panels, a solar charger controller, and an Anself submersible pump (240L/H). Results demonstrate optimal performance of time-based on/off control and smartphone-based monitoring. The recommended solar panel charging timeframe is 07:00 to 16:00, generating 34Wh of electrical energy with 96.7% current and 97% voltage accuracy readings from the ADS1115 sensor. This research contributes to enhancing hydroponic systems' efficiency and sustainability through IoT integration.
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H. E. M. Abraham, J. N. K. Dumais, and C. B. D. Pakasi, “Analisis Keuntungan Usahatani Sayuran Selada Hidroponik Pada Urban Farming di Batukota Kecamatan Malalayang Kota Manado,” AGRI-SOSIOEKONOMI, vol. 17, no. 3 MDK, pp. 961–966, 2021, doi: 10.35791/agrsosek.17.3.
S. Fuada, E. Setyowati, G. I. Aulia, and D. W. Riani, “Narative Review Pemanfaatan Internet-of-Things Untuk Aplikasi Seed Monitoring and Management System Pada Media Tanaman Hidroponik di Indonesia,” INFOTECH, vol. 9, no. 1, pp. 38–45, Jan. 2023, doi: 10.31949/infotech.v9i1.4439.
F. Fadli, S. Suryadi, and E. T. Kembaren, “Pengembangan Kewirausahaan Agribisnis Melalui Pelatihan Kelompok Usaha Hidroponik,” Agrifo : Jurnal Agribisnis Universitas Malikussaleh, vol. 5, no. 1, pp. 9–13, Aug. 2020, doi: 10.29103/ag.v5i1.2733.
M. Yustiningsih, Y. G. Naisumu, and A. Berek, “Deep Flow Technique (DFT) Hidroponik Menggunakan Media Nutrisi Limbah Cair Tahu Dan Kayu Apu (Pistia stratiotes L) Untuk Peningkatan Produktivitas Tanaman,” Jurnal Mangifera Edu, vol. 3, no. 2, pp. 110–121, Feb. 2019, doi: 10.31943/mangiferaedu.v3i2.25.
I. Sanubary, P. P. A. Santoso, and D. Mahmuda, “Pembuatan Instalasi Panel Surya pada Sistem Hidroponik di Desa Dalam Kaum,” WIDYABHAKTI Jurnal Ilmiah Populer, vol. 4, no. 1, pp. 31–35, Nov. 2021, doi: 10.30864/widyabhakti.v4i1.285.
M. A. Husaini, A. Zulianto, and A. Sasongko, “Otomatisasi Monitoring Metode Budidaya Sistem Hidroponik dengan Internet of Things (Iot) Berbasis Android MQTT dan Tenaga Surya,” Jurnal sostech, vol. 1, no. 8, pp. 785–800, Aug. 2021, doi: 10.59188/jurnalsostech.v1i8.163.
Y. Pebriyanto, N. Kurniawati, M. Dirgantara, and D. Monita, “Penerapan Sistem Pembangkit Listrik Tenaga Surya (PLTS) Sebagai Sumber Energi Alternatif Dalam Budidaya Sistem Hidroponik di UMKM Maestro Borneo Hidroponik Farm Palangka Raya,” J-ABDI, vol. 2, no. 8, pp. 5725–5732, Jan. 2023, doi: 10.53625/jabdi.v2i8.4485.
M. Z. Falah, W. T. Handoko, A. I. Syah, F. Z. Azizah, Sujito, and L. Gumilar, “Implementation of Smart Farming Based Solar Cell System in Hydroponic in the Agricultural Area of Blitar Village,” Community Development Journal : Jurnal Pengabdian Masyarakat, vol. 4, no. 4, pp. 7015–7020, Sep. 2023, doi: 10.31004/cdj.v4i4.18161.
D. P. Rumambi, D. P. M. Ludong, A. M. Saiya, and F. Paat, “Application Of Solar Panels As A Source Of Electricity For Hydroponic Irrigation Systems,” JAT, vol. 4, no. 1, pp. 122–129, Jan. 2023, doi: 10.35791/jat.v4i1.46703.
T. Puspita, Y. R. Denny, and I. A. Darmawan, “Rancang Bangun ESP Berbasis Modul Surya 50 WP Pada Sistem Hidroponik DFT (Deep Flow Technique),” JURRIT, vol. 2, no. 2, pp. 01–14, Aug. 2023, doi: 10.55606/jurrit.v2i2.1770.
H. Hermansyah, K. Kasim, and I. K. Yusri, “Solar Panel Remote Monitoring and Control System on Miniature Weather Stations Based on Web Server and ESP32,” International Journal of Recent Technology and Applied Science (IJORTAS), vol. 2, no. 1, pp. 1–24, Mar. 2020, doi: 10.36079/lamintang.ijortas-0201.56
I. Inayah, N. Hayati, A. Nurcholis, A. Dimyati, and M. G. Prasetia, “Realtime Monitoring System of Solar Panel Performance Based on Internet of Things Using Blynk Application,” ELINVO, vol. 7, no. 2, pp. 135–143, Feb. 2023, doi: 10.21831/elinvo.v7i2.53365
S. D. Ayuni, S. Syahrorinni, and J. Jamaaluddin, “Sosialisasi Aplikasi Monitoring Keamanan Tanggul Lapindo via Smartphone di Desa Gempolsari,” Jurnal Pengabdian Masyarakat Progresif Humanis Brainstorming, vol. 5, no. 1, pp. 154–161, Jan. 2022, doi: 10.30591/japhb.v5i1.2717
I. Anshory et al., “Optimization DC-DC boost converter of BLDC motor drive by solar panel using PID and firefly algorithm,” Results in Engineering, vol. 21, p. 101727, Mar. 2024, doi: 10.1016/j.rineng.2023.101727
S. Sugiyono, Metode Penelitian Kuantitatif, Kualitatif, dan R & D. Bandung: Penerbit Alfabeta, 2015.
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