Early Warning System (EWS) Kualitas Air Hidroponik Melon Berbasis IoT dan Sensor pH - TDS - Suhu
Abstract
Dependence on handheld instruments in managing hydroponic melon cultivation at Tanjung Farm is a major constraint, as it is unable to detect changes in water conditions rapidly and continuously, thereby increasing the risk of crop failure due to delayed intervention. This study aims to develop an IoT (Internet of Things)-based nutrient solution quality monitoring system capable of measuring four water parameters in real-time, namely pH (potential of Hydrogen), TDS (Total Dissolved Solids), turbidity, and temperature, equipped with an automatic Early Warning System (EWS). The study adopted a Mixed Methods design with a prototype development approach conducted at Tanjung Farm during 2025–2026, involving 2 respondents consisting of the farm supervisor and farm manager as system end-users. The system was constructed using an ESP32 microcontroller as the central processing unit, four water quality sensor modules, a MySQL database for data archiving, and a web interface developed using the Laravel framework. Performance evaluation revealed that the pH sensor and DS18B20 temperature sensor achieved high precision with a 0% error rate compared to handheld measuring instruments, while the TDS sensor produced a 26.7% error attributed to the absence of a hardware temperature compensation module. Average data transmission latency from the microcontroller to the server was recorded at 5 seconds with EWS notification updates every 30 seconds. The resulting system successfully shifted conventional monitoring patterns toward an integrated digital solution operable remotely to maintain the productivity stability of hydroponic melon cultivation.
Downloads
References
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(June), 102401. https://doi.org/10.1016/j.mex.2023.102401
Afandi, I. R., Febriawan, D., Faturohman, A. S. F., Nazihah, F., Andreansyah, M. A., & Alfian, B. (2023). Aplikasi SIPEDRO 1.0 untuk pemantauan hidroponik dengan platform blynk terintegrasi ESP32. TEKNOSAINS : Jurnal Sains, Teknologi Dan Informatika, 10(1), 71–81. https://doi.org/10.37373/tekno.v10i1.334
Al Hakim, R. R., Pangestu, A., Hidayah, H. A., Faizah, S., & Nugraha, D. (2022). Pemanfaatan Teknologi IoT untuk Pertanian Berkelanjutan (IoT Technology for Sustainable Agriculture). E-Prosiding Seminar Nasional Inovasi Teknologi Pertanian Berkelanjutan (INOPTAN), 1(1), 1–9. https://jurnal.unikastpaulus.ac.id/index.php/inoptan/article/view/1400
Aziz, A. (2026). Implementasi Mikrokontroler ESP32 Dan Sensor Kualitas Air Dalam Sistem Monitoring Lingkungan Berbasis Internet of Things. 5(1), 1–13. https://doi.org/10.59431/jmasif.v5i1.716
Aziz, D. A., Asgarnezhad, R., Mustafa, M. S., Saber, A. A., & Alani, S. (2023). A Developed IoT Platform-Based Data Repository for Smart Farming Applications. Journal of Communications, 18(3), 187–197. https://doi.org/10.12720/jcm.18.3.187-197
Azmi, A., Irwansyah, M. A., Muhardi, H., Kom, M., Profesor, J., Nawawi, D. H. H., & Barat, K. (2025). Sistem Monitoring Kualitas Air Kolam Akuakultur Udang Vaname Berbasis Internet Of Things (Iot). Justin, 13(2), 205–213. https://doi.org/10.26418/justin.v13i2.86599
Chuzaini, F., Wedi, D., Mata, S., Grogolan, A., Ngunut, D., & Tirta, S. (2022). IoT Monitoring Kualitas Air Dengan Menggunakan Sensor Suhu , pH , Dan Total Dissolved Solids ( TDS ). 11, 46–56.
Fadzar, A., Azkiya, M. A., & Hakim, T. D. (2024). Perancangan Basis Data Budidaya Benih Ikan Air Tawar Adit Farm Menggunakan Mysql. Jurnal Informatika Dan Teknik Elektro Terapan, 12(3). https://doi.org/10.23960/jitet.v12i3.4437
Fauzi, L. R., & Suharjo, I. (2026). Prototipe Alat Deteksi Banjir Berbasis ESP32 , TinyML , dan Notifikasi. 8(01), 115–137.
Harahap, M., Yustriawan, D., & Apriyanti, I. (2024). Budidaya Melon ( Cucumis melo L ) Hidroponik dalam Pemanfaatan Halaman Pekarangan Rumah di Desa Sampali Kecamatan Percut Sei Tuan Kabupaten Deli Serdang. Jurnal Pengabdian Pada Masyarakat, 9(3), 639–650.
Herlina, A., Ardiansah, M. S., Fadilah, R., & Putra, S. A. H. M. (2024). Sistem Monitoring Kualitas Air Kolam Lele Berbasis IOT Dengan Sistem Tenaga Hibrida. Jurnal Rekayasa Elektro Sriwijaya, 6(1), 33–45. https://doi.org/10.36706/jres.v6i1.136
Ihsan, Armin, A. W. A. (2024). Penerapan Internet of Things Untuk Monitoring Kinerja Sensor Untuk Deteksi Dini Kebakaran. Jurnal Sains Terapan, 10(2), 101–106. https://jurnal.poltekba.ac.id/index.php/jst/article/view/2307/1144
Imam, & Zamzami, M. N. (2025). Integrasi WSN dan IoT Untuk Sistem Monitoring Rumah Cerdas Berbasis MQTT. Karapan Network Journal, 1(I), 612–623. https://ejournal.omahtabing.com/knj/en/article/view/58
Imansyah, A. A., Syamsiah, M., & Jakaria, M. (2022). Rancang Bangun Prototype Sistem Otomatis Dalam Budidaya Tanaman Hidroponik Berbasis IoT (Internet of Things). Journal of Innovation and Research in Agriculture, 1(1), 1–13. https://doi.org/10.56916/jira.v1i1.97
Muriyatmoko, D., Kurnia, R., Utama, S. N., & Musthafa, A. (2023). Sistem Monitoring Jarak Jauh Kontrol pH Tanaman Selada Dengan Media Hidroponik. 11(1).
Rivana, R. R., Made, M. R., Edilla, & Jajang Jaenudin. (2023). Sistem Monitoring Nutrisi dan PH Air pada Tanaman Hidroponik Berbasis Internet of Things (IoT). Jurnal Elektronika Dan Otomasi Industri, 10(3). https://doi.org/10.33795/elkolind.v10i3.3579
Septian, G. W. P. K. E. (2025). Aplikasi berbasis IoT untuk pemantauan dan pemeliharaan pc mini secara real-time. 18(2), 78–88.
Setiawan, A., Jailani, S., & Risnita. (2025). Arus Jurnal Sosial dan Humaniora (AJSH) Penelitian Metode Campuran (Mixed Method) INFO PENULIS. Arus Jurnal Sosial Dan Humaniora (AJSH), 5(2), 1484–1491.
Syafitri, A. R., Angraeni, A., & Wibowo, A. (2025). IKN : Jurnal Informatika dan Kesehatan Sistem Informasi Manajemen Perpustakaan Digital Berbasis Web Menggunakan Framework Laravel IKN : Jurnal Informatika dan Kesehatan. 2, 89–98.
Valensyah, F. A., & Irnawati, O. (2024). Sistem Informasi Berbasis Website Menggunakan Framework Laravel. 5(1), 7–14.
Wijayanto, D., Silmina, E. P., Firdonsyah, A., & Aditiya, A. A. (2024). Prototype Iot Untuk Pemantauan Nutrisi Dan Ph Pada Hidroponik Menggunakan Esp32 Di Kebun Hidropinik Vefar Yogyakarta. HOAQ (High Education of Organization Archive Quality) : Jurnal Teknologi Informasi, 15(2), 100–106. https://doi.org/10.52972/hoaq.vol15no2.p100-106
Bila bermanfaat silahkan share artikel ini
Berikan Komentar Anda terhadap artikel Early Warning System (EWS) Kualitas Air Hidroponik Melon Berbasis IoT dan Sensor pH - TDS - Suhu
Pages: 1499-1507
Copyright (c) 2026 Lilis Kurlina, Amalia Herlina, Zainal Arifin

This work is licensed under a Creative Commons Attribution 4.0 International License.
Authors who publish with this journal agree to the following terms:
- Authors retain copyright and grant the journal right of first publication with the work simultaneously licensed under Creative Commons Attribution 4.0 International License that allows others to share the work with an acknowledgment of the work's authorship and initial publication in this journal.
- Authors are able to enter into separate, additional contractual arrangements for the non-exclusive distribution of the journal's published version of the work (e.g., post it to an institutional repository or publish it in a book), with an acknowledgment of its initial publication in this journal.
- Authors are permitted and encouraged to post their work online (e.g., in institutional repositories or on their website) prior to and during the submission process, as it can lead to productive exchanges, as well as earlier and greater citation of published work (Refer to The Effect of Open Access).













