Penyiraman Tanaman Berbasis Arduino Menggunakan Sensor Soil Moisture dan Telegram
DOI:
https://doi.org/10.55606/jutiti.v6i1.6962Keywords:
Arduino, Automatic, Soil Moisture, Soil Watering, TelegramAbstract
Currently, most plant watering methods in gardens and yards are still manual or require human labor. This method of watering plants is considered less than optimal because it requires more energy and less efficient water use. Furthermore, humidity control requires constant monitoring to ensure adequate water supply for the plants. However, this can be time-consuming and labor-intensive, increasing maintenance costs. Based on these challenges, the author developed an innovation by creating an automatic plant watering device. This device automatically turns on and off, determined by soil moisture parameters, eliminating the need for manual watering. This system utilizes an Arduino UNO and a Soil Moisture Sensor as the primary components for measuring soil moisture. The output of this final project is a device that can automatically control the on and off of a water pump based on the moisture level. In addition, the owner can also control the condition of the plants remotely, because this tool is connected to Telegram software, with this Telegram the plant owner can control manually or automatically to turn the water pump on and off and notifications will appear on the Telegram that has been installed on the cellphone, so the owner does not need to be afraid if he wants to travel.
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Efendi, Y. (2018). Internet of Things (IoT) sistem pengendalian lampu menggunakan Raspberry Pi berbasis mobile. Jurnal Ilmiah Ilmu Komputer, 4(2), 21–27. https://doi.org/10.35329/jiik.v4i2.41
Effendi, A., & Yusran, M. (2018). Sistem kendali otomatis penyiraman taman berbasis solar cell. Digilib Universitas Muhammadiyah.
Ilmiah, P. (2025). IoT dengan logika fuzzy disusun sebagai salah satu syarat menyelesaikan program studi strata I.
Kontrol, D., & Aplikasi Blynk. (2024). Journal of Educational and Applied Science. Journal of Educational and Applied Science, 2(September), 1–9.
Mediawan, M. (2018). Sistem penyiram tanaman otomatis berbasis Arduino pada rumah tanaman.
Nanda, A. P., Mahdi, M. I., & Program Studi Sistem Informasi. (2024). Sistem otomatis penyiraman tanaman berbasis sensor. Jurnal Sistem Informasi, 15(4), 764–774.
Pratama, G. Y. (n.d.). Guntur Yoga Pratama (165–174). Fakultas Sains, Universitas Buddhi Dharma, 3(2), 165–174.
Rahmadi, R. R. (2018). Monitor dan kontrol penyiram tanaman otomatis berbasis IoT (Laporan proyek akhir). Politeknik Manufaktur Negeri Bangka Belitung.
Rajagukguk, F. T. M., Poekoel, V. C., & Putro, M. D. (2018). Implementasi WSN pada robot penyiram tanaman otomatis. Jurnal Teknik Elektro dan Komputer, 7(1).
Rozzi, Y. A., Fredricka, J., & Sussolaikah, K. (2023). Desain penyiram tanaman otomatis berbasis Arduino menggunakan sensor kelembaban tanah. KLIK: Kajian Ilmiah Informatika dan Komputer, 3(5), 490–496.
Sephiani, A. B. R. F. (2024). Pengembangan sistem penyiram tanaman otomatis berbasis Internet of Things (IoT) menggunakan sensor DHT11, DS18B20 dan kelembapan tanah.
Siman. (2022). Rancang bangun sistem penyiraman tanaman otomatis menggunakan Arduino dan sensor moisture sebagai pengukur kelembaban tanah untuk tanaman cabai.
Sugiyono. (2025). Metode penelitian kuantitatif, kualitatif, dan R&D. Academia.edu.
Yusuf, M., Isnawaty, & Rahmat, R. (2016). Implementasi robot line follower penyiraman tanaman otomatis menggunakan metode proportional-integral-derivative controller (PID). Seminar Nasional Teknologi Informasi dan Komunikasi (SemsnTIK), 2(1), 111–124.
Zikri, A. (2020). Rancang bangun sistem penyiraman otomatis berbasis Raspberry Pi 3 dengan memanfaatkan ThingSpeak dan interface Android kendali (Skripsi). UIN Syarif Hidayatullah Jakarta.
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