IoT-Based Water Quality Monitoring and Control System for Koi Fish Ponds
DOI:
https://doi.org/10.30871/jaic.v10i1.11715Keywords:
ESP32 microcontroller, Firebase Cloud, Koi fish, Internet of Things (IoT), Ultrasonic sensorAbstract
Koi fish (Cyprinus rubrofuscus) require stable water quality to support their health and growth, yet conventional pond water management is generally performed manually and tends to be inefficient and inconsistent. This study aims to design and implement an Internet of Things (IoT)-based water quality monitoring and control system for koi fish ponds. The proposed system integrates an ESP32 microcontroller with pH, turbidity, ultrasonic, and water level sensors to monitor pond conditions in real time and support controlled water drainage and refilling through a web-based interface. Sensor data are transmitted to Firebase Cloud, enabling remote monitoring and control via an internet connection. System testing was conducted on four koi ponds with ten measurements for each parameter, resulting in forty data samples per parameter. The experimental results show that the sensors provide stable measurements with average error values below 3%, and the system demonstrates a response time of approximately 1–2 seconds under stable network conditions. These results indicate that the developed system is capable of supporting effective water quality monitoring and control while reducing reliance on continuous manual supervision in koi pond management.
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[1] U. A. W. U. Wulandari, N. Faridah, and A. Kurniawan, “Aspek Reproduksi Ikan Koi (Cyprinus rubrofuscus Lacepede, 1803) Strain Tancho Dan Kohaku Dengan Pemijahan Semi Buatan,” Amreta Meena, vol. 1, no. 3, pp. 111–119, 2024.
[2] A. B. Zaidy, “Pengaruh Pergantian Air Terhadap Kualitas Air dan Performa Produksi Ikan Lele Dumbo (Clarias gariepenus) Dipelihara di Kolam Bioflok,” Jurnal Penyuluhan Perikanan dan Kelautan, vol. 16, no. 1, pp. 95–107, 2022.
[3] N. Fitriana, A. A. Darmawan, and M. F. Rahmawati, “Internet Of Things Untuk Monitoring Kondisi Air Budidaya Ikan Kelompok ‘Tutut Jaya’kota Malang,” Jurnal AbdiMas Nusa Mandiri, vol. 6, no. 2, pp. 76–85, 2024.
[4] A. Djalilov, E. Sobirov, O. Nazarov, S. Urolov, and I. Gayipov, “Study on automatic water level detection process using ultrasonic sensor,” in IOP Conference Series: Earth and Environmental Science, IOP Publishing, 2023, p. 012020.
[5] H. K. H. Singh, H. Kamaludin, I. R. A. Hamid, N. Z. M. Safar, and N. Abdullah, “IoT-Based water tank level monitoring system using ultrasonic sensor,” in The 2nd International Recent Trends In Engineering, Advanced Computing And Technology Conference (RETREAT) 2021, AIP Publishing LLC, 2023, p. 020009.
[6] D. H. Sya’bana, L. Nurpulaela, B. F. Tanjung, A. M. Ibrahim, and N. A. Nugraha, “Otomatisasi Sistem Pengontrol Dan Pemantauan Kualitas Air Kolam Pemijahan Ikan Koi Berbasis Sensor Potential Hydro, Turbidity Dan Raspberry Pi 4B”.
[7] J. Parung, S. Larissa, A. Santoso, and D. N. Prayogo, “Penggunaan Teknologi Blokchain, Internet Of Things Dan Artifial Intelligence Untuk Mendukung Kota Cerdas. Studi Kasus: Supply Chain Industri Perikanan,” 2021, Universitas Surabaya.
[8] O. Okpatrioka, “Research and development (R&D) penelitian yang inovatif dalam pendidikan,” Dharma Acariya Nusantara: Jurnal Pendidikan, Bahasa dan Budaya, vol. 1, no. 1, pp. 86–100, 2023.
[9] A. S. R. Ageng, A. M. G. Ageng, R. Kurniawan, and P. Pramono, “Alat Pengontrol AC Otomatis Menggunakan Relay Dengan Koneksi Blynk Berbasis Esp32,” in Prosiding Seminar Nasional Teknologi Informasi dan Bisnis, 2025, pp. 609–614.
[10] S. Y. Damayanti, T. Andriyanto, and A. Ristyawan, “Sistem Monitoring Kualitas Air Tambak Ikan Koi (Cyprinus Carpio) Berbasis Teknologi Internet Of Things (IOT),” in Prosiding SEMNAS INOTEK (Seminar Nasional Inovasi Teknologi), 2021, pp. 141–147.
[11] J. Mardizal and F. Rizal, Manajemen Kualitas Air. Eureka Madia Utama, 2024.
[12] H. Hasbullah and Y. Pramudya, “Pengembangan Sistem Pemantauan Tinggi Gelombang Air Pada Model Tsunami Menggunakan Sensor Ultrasonik Hc-Sr04 Berbantuan Arduino,” Syntax Idea, vol. 6, no. 2, pp. 681–689, 2024.
[13] M. I. Al Varizi and M. Ariandi, “Sistem Otomatis Filterisasi Air Sumur dan Sungai Berbasis Mikrokontroler dengan Katup Selenoid,” Aksi Kita: Jurnal Pengabdian kepada Masyarakat, vol. 1, no. 3, pp. 315–320, 2025.
[14] R. Saryoga, A. S. Puspaningrum, and I. Ismail, “Sistem Pendeteksi Ketinggian Air dan Perhitungan Volume pada Bak Nutrisi Vertikal Hidroponik Menggunakan Sensor Sr04t: Water Level Detection System and Volume Calculation In Vertical Hydroponic Nutrition Tubs Using Sr04t Sensor,” MALCOM: Indonesian Journal of Machine Learning and Computer Science, vol. 5, no. 2, pp. 626–634, 2025.
[15] H. A. Harahap, “Rancang Bangun Sistem Kontrol Kolam Ikan Nila Berbasis Out Seal PlC,” Jurnal Universal Technic, vol. 2, no. 1, pp. 1–10, 2023.
[16] V. Visayas, C. Cakra, and Y. Supit, “Sistem Kontrol Alat Elektronik Dalam Rumah Berbasis Internet Of Things (Iot),” Simtek: jurnal sistem informasi dan teknik komputer, vol. 9, no. 2, pp. 249–261, 2024.
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