Sistem Otomatis Penyiraman, Pemupukan, dan Pengusir Hama Berbasis Arduino Uno dengan Pemantauan Kelembapan dan pH Tanah
DOI:
https://doi.org/10.61132/konstruksi.v4i1.1288Keywords:
Agricultural Automation, Arduino Uno, Moisture Sensor, Pest Repellent, Soil pHAbstract
This study aims to design, implement, and test a prototype that automates three functions, namely watering, fertilizing, and pest control based on Arduino Uno with the ability to directly monitor soil moisture and pH. This system is equipped with four main types of sensors. Soil condition monitoring involves an FC-28 soil moisture sensor and a soil pH sensor, water level measurement involves an HC-SR04 ultrasonic sensor, and pest detection in the plant area involves a RIP sensor. All data obtained from these sensors is then processed by the Arduino Uno microcontroller to automatically activate actuators such as water pumps, liquid fertilizer pumps, buzzers, and DC motors according to soil conditions and plant needs. Prototype testing was conducted on simulated land with various scenarios of moisture, soil pH, and pest activity. The test results revealed that the system was proven to be able to significantly optimize water and fertilizer utilization, as well as reduce pest disturbances that could potentially damage plants. In addition, this system also displays the operational status directly through an LCD screen, making it easy for users to monitor. The advantage of this system is its multi-function integration in a single device that is cost-effective and easy to operate. In the future, the functionality of this system can be improved through integration with Internet of Things (IoT) technology, enabling remote monitoring and control with greater efficiency. More broadly, this study is expected to support increased production and sustainable agricultural practices in Indonesia.
References
Adhamatika, A., Salsabilah, B. A., Triardianto, D., Putri, D. A., & Yuansah, S. C. (2024). Pengujian akurasi sensor ultrasonik HC-SR04 dalam mengukur jarak suatu benda. NaCIA (National Conference on Innovative Agriculture), 2(1), 175–180. https://doi.org/10.25047/nacia.v2i1.236
Daniel, R., Utomo, A. D. N., & Setyoko, Y. A. (2022). Rancang bangun alat monitoring kelembaban, pH tanah, dan pompa otomatis pada tanaman tomat dan cabai. LEDGER: Journal of Informatics and Information Technology, 1(1), 161–170. https://doi.org/10.20895/ledger.v1i4.862
Hartati, R. D., Suryaman, M., & Saepudin, A. (2023). Pengaruh pemberian bakteri pelarut fosfat pada berbagai pH tanah terhadap pertumbuhan dan hasil kedelai (Glycine max (L.) Merr.). Journal of Agrotechnology and Crop Science, 1(1), 26–34.
Hastariyadi, R. B. A., Sani, S. M., & Gianto. (2024). Prototipe pengukur volume bejana ukur standar berbasis internet of things dalam tera dan tera ulang pompa ukur bahan bakar minyak. Jurnal Informatika dan Teknik Elektro Terapan, 12(3), 2857–2864. https://doi.org/10.23960/jitet.v12i3.4931
Ivanova, I. (2025). Soil moisture forecasting from sensors-based soil moisture, weather, and irrigation observations: A systematic review. Smart Agricultural Technology, 10, 100692. https://doi.org/10.1016/j.atech.2024.100692
Lesmana, K., & Sukarno, S. A. (2025). Prototipe penggunaan motor servo untuk dispenser otomatis berbasis Arduino dan sensor HC-SR04. Jurnal Informatika dan Teknik Elektro Terapan, 13(2), 16–22. https://doi.org/10.23960/jitet.v13i2.6063
Missa, I. K., Lapono, L. A. S., & Wahid, A. (2018). Rancang bangun alat pasang surut air laut berbasis Arduino Uno dengan menggunakan sensor ultrasonik HC-SR04. Jurnal Fisika: Fisika Sains dan Aplikasinya, 3(2), 102–105. https://doi.org/10.35508/fisa.v3i2.609
Nandi, R., & Shrestha, D. (2024). Assessment of low-cost and higher-end soil moisture sensors across various moisture ranges and soil textures. Sensors, 24(18), 5886. https://doi.org/10.3390/s24185886
Pradana, R. W., Pratiwi, G. F., & Arifin, T. N. (2024). Rancang bangun sistem pemantau ketinggian air otomatis menggunakan sensor ultrasonik (HC-SR04) berbasis Arduino Uno dengan antarmuka komputer berbasis Microsoft Visual Basic 6.0. Jurnal Teknik dan Science, 3(1), 13–24. https://doi.org/10.56127/jts.v3i1.1212
Purnomo, D., & Utami, P. N. (2019). Analisis produksi padi di Indonesia. Prosiding University Research Colloquium, 224–230. https://www.repository.urecol.org/index.php/proceeding/article/view/538
Santoso, M. N. I. F. (2021). Aplikasi sensor ultrasonik HC-SR04 pada robot wall follower untuk menentukan kecepatan motor. SinarFe7, 4(1), 148–151. https://journal.fortei7.org/index.php/sinarFe7/article/view/41
Sardar, S. P., Prajapati, T., Prabhu, V., & Das, Y. (2022). Preventive maintenance using Arduino Uno. International Journal of Mechanical and Industrial Technology, 10(1), 1–9.
Sihombing, R., Azizah, A., Arifin, Z., Sari, W. E., Oscar, A. W., & Putra, P. R. S. (2025). Design of automatic irrigation system for post-mining land reclamation. International Journal on Informatics Visualization, 9(1), 65–71. https://doi.org/10.62527/joiv.9.1.2950
Syam, M. W. S., Latifa, U., & Nurpulaela, L. (2023). Perancangan kontrol aktuator berbasis NodeMCU ESP32 pada smart agriculture. Aisyah Journal of Informatics and Electrical Engineering, 5(2), 141–151. https://doi.org/10.30604/jti.v5i2.145
Universitas Ichsan Gorontalo, & Internet of Things. (2018). 315-1016-2-PB. 10, 237–243.
Vera, V. F. S., Ekawita, R., & Yuliza, E. (2021). Desain bangun pH tanah digital berbasis Arduino Uno. Journal Online of Physics, 7(1), 36–41. https://doi.org/10.22437/jop.v7i1.14589
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