RANCANG BANGUN ALAT SISTEM MONITORING HIDROPONIK BERBASIS ANDROID
Abstract
Indonesia is known as an agrarian country, where the agricultural sector is the backbone of the economy with a significant contribution to GDP. However, challenges such as land conversion, climate change, and environmental pollution threaten the sustainability of this sector. Hydroponics is one of the innovative solutions to deal with these problems, especially for people who have limited land. However, hydroponic methods require intensive monitoring of growth parameters such as pH, temperature, and humidity. This research develops an Arduino and ESP32-based hydroponic monitoring system integrated with an Android application using Firebase as a real-time database. The system is able to read pH, temperature, and humidity parameters, and present the data in graphical form for easy monitoring. Testing of the tool shows a high level of accuracy with a pH measurement error of 0.1% and humidity of 1.35%. This system is expected to help farmers in improving efficiency and productivity in hydroponic plant cultivation.
References
[2] M. N. Ardiansyah, “Riset IMPI: 5 Tahun, Penurunan Luas Lahan Pertanian Indonesia Capai 668 Ribu Hek-tar,” *TIMES Indonesia*, May 10, 2021. Accessed: Nov. 20, 2024. [Online]. Available: https://timesindonesia.co.id/indonesia-positif/381626/riset-impi-5-tahun-penurunan-luas-lahan-pertanian-indonesia-capai-668-ribu-hektar
[3] Khan, S., Purohit, A., & Vadsaria, N. (2020). Hydroponics: current and future state of the art in farming. Journal of Plant Nutrition, 44(10), 1515–1538. https://doi.org/10.1080/01904167.2020.1860217
[4] Mamatha, V., & Kavitha, J. C. (2023). Machine learning based crop growth management in greenhouse environment using hydroponics farming techniques. Measurement: Sensors, 25(December 2022), 100665. https://doi.org/10.1016/j.measen.2023.100665
[5] Roidah, I. S. (2014). Pemanfaatan lahan dengan menggunakan sistem hidroponik. Jurnal Teknologi Pertanian, 1(2), 43–50.
[6] R. Rosliani and N. Sumarni, Budidaya Tanaman Sayuran dengan Sistem Hidroponik. Balai Penelitian Tanaman Sayuran, 2005, Monografi No. 27, ISBN: 979-8403-36-2.
[7] Dadang ITS, “Empat Hal Penting dalam Mengelola Hidroponik,” *ITS News*, May 10, 2017. Accessed: Nov. 20, 2024. [Online]. Available: https://www.its.ac.id/news/2017/02/24/empat-hal-penting-dalam-mengelola-hidroponik/
[8] Irawan1, N. D., Nurdin, S., Kusumawardhani, A., & Izza, S. (2023). Smart Hidroponik Berbasis Internet of Things (IoT) untuk Efektifitas Pertumbuhan Tanaman Bayam Hijau (Amaranthus Tricolor). RAINSTEK: Jurnal Terapan Sains & Teknologi, 5(2), 2023.
[9] Abu Sneineh, A., & Shabaneh, A. A. A. (2023). Design of a smart hydroponics monitoring system using an ESP32 microcontroller and the Internet of Things. MethodsX,11(September), 102401. https://doi.org/10.1016/j.mex.2023.102401
[10] Hidayat, M. A. J., & Amrullah, A. Z. (2022). Sistem kontrol dan monitoring tanaman hidroponik berbasis Internet of Things (IoT) menggunakan NodeMCU ESP32. Jurnal SAINTEKOM, 12(1), 23–32. https://doi.org/10.33020/saintekom.v12i1.223
[11] Ridwan, M., & Sari, K. M. (2021). Penerapan IoT dalam Sistem Otomatisasi Kontrol Suhu, Kelembaban, dan Tingkat Keasaman Hidroponik. Jurnal Teknik Pertanian Lampung (Journal of Agricultural Engineering), 10(4), 481. https://doi.org/10.23960/jtep-l.v10i4.481-487
[12] Fuada, S., Setyowati, E., Aulia, G. I., & Riani, D. W. (2023). Narative Review Pemanfaatan Internet-of-Things Untuk Aplikasi Seed Monitoring and Management System Pada Media Tanaman Hidroponik Di Indonesia. INFOTECH Journal, 9(1), 38–45. https://doi.org/10.31949/infotech.v9i1.4439
[13] Gregoryan, M., Andjarwirawan, J., & Lim, R. (2019). Sistem Kontrol dan Monitoring Ph Air serta Kepekatan Nutrisi pada Budidaya Hidroponik Jenis Sayur dengan Teknik Deep Flow Techcnique. Jurnal Infra, 7(2), 1–6.
[14] A. Sofyan and P. P. B. D, “Sistem Keamanan Pengen-dali Pintu Otomatis Berbasis Radio Frequency Identifi-cation (RFID) dengan Arduino Uno R3,” *Jurnal Sis-fotek Global*, vol. 7, no. 1, pp. 2088–1762, 2017.
[15] H. Susanto, R. Pramana, and M. Mujahidin, “Peran-cangan Sistem Telemetri Wireless untuk Mengukur Suhu dan Kelembaban Berbasis Arduino Uno R3 AT-mega328p dan XBee Pro,” *Universitas Maritim Raja Ali Tanjung Pinang*, vol. 4, no. 1, 2013.
[16] Muliadi, A. Imran, and M. Rasul, “Pengembangan Tempat Sampah Pintar Menggunakan ESP32,” *Jurnal Media Elektrik*, vol. 17, no. 2, pp. 2721–9100, Apr. 2020.
[17] A. Zulius, “Rancang Bangun Monitoring pH Air Menggunakan Soil Moisture Sensor di SMK N 1 Teb-ing Tinggi Kabupaten Empat Lawang,” *Jusikom*, vol. 2, no. 1, pp. 37–43, 2017.
[18] Muliadi, A. Imran, and M. Rasul, “Pengembangan Tempat Sampah Pintar Menggunakan ESP32,” *Jurnal Media Elektrik*, vol. 17, no. 2, pp. 2721–9100, Apr. 2020.
[19] F. Puspasari, I. Fahrurrozi, U. Y. Oktiawati, and T. P. Satya, “Development of embedded system in monitor-ing temperature and humidity as supporting smart farm,” *Journal of Physics: Conference Series*, vol. 1511, no. 1, pp. 012017, Mar. 2020.
[20] M. A. Lesmana, “Monitoring Charging–Discharging Baterai Li-Ion CD 18650 3.7V Menggunakan No-deMCU Berbasis Internet of Things (IoT),” Doctoral dissertation, Universitas Siliwangi, 2022.
[21] K. Edi and S. M. Miftah, “Implementasi Kebun Cerdas pada Perkebunan Hidroponik Sistem Deep Flow Tech-nique (DFT) Terintegrasi IoT,” Doctoral dissertation, Politeknik Manufaktur Negeri Bangka Belitung, 2023.
[22] M. Ilhami, “Pengenalan Google Firebase untuk Hybrid Mobile Apps Berbasis Cordova,” *Jurnal Ilmiah IT CIDA*, vol. 3, no. 1, 2017.
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