Perancangan Miniatur Monitoring Kualitas Air Untuk Tambak Ikan Berbasis Internet Of Things (Study Kasus PT Prima)
Keywords:
water quality monitoring, sensor, pH, real-time monitoring, water resource managementAbstract
Water quality monitoring is a crucial aspect of ensuring environmental sustainability and human health. With increasing pollution and industrial activities, the quality of water in natural resources is increasingly threatened. Therefore, the development of a water quality monitoring tool capable of providing real-time data is essential. This research aims to design and develop a sensor-based water quality monitoring system that can measure key parameters such as pH, temperature, and the presence The system is equipped with sensors connected to a microcontroller, which processes the data for display on an LCD screen or transmission via a network for remote monitoring. The results demonstrate that this system can accurately measure water quality and provide fast, effective information for environmental supervision. It is hoped that this tool can be widely adopted to support decision-making in water resource management and promote better water quality maintenance across various sectors, including industry, agriculture, and households.
References
[1] t. rikanto and a. witanti, “sistem monitoring kualitas kekeruhan air berbasis internet of thing,” j. fasilkom, vol. 11, no. 2, pp. 87–90, 2021.
[2] a. bayu, pratama, i. much ibnu subroto, and a. riansyah, “sistem monitoring dan kontrol kualitas air pada kolam ikan koi berbasis internet of things (iot),” j. transistor elektro dan inform. (transistor ei), vol. 4, no. 3, pp. 171–180, 2022, [online]. available: http://jurnal.unissula.ac.id/online/index.php/ei
[3] y. karmani, y. s. belutowe, and e. r. nubatonis, “system monitoring tingkat kekeruhan air dan pemberian pakan ikan pada aquarium berbasis iot,” j. teknol. inf., vol. 6, no. 1, pp. 77–83, 2022.
[4] m. rozak, “rancang bangun alat bantu pengisian token listrik dengan pengendali utama microcontroller berbasis internet of things,” 2024.
[5] f. fajryn, h. setiawan, and d. sartika, “digitalisasi sistem monitoring ph air pada instalasi pengelolaan air limbah laboratorium bspji palembang,” j. ilmu komput. dan sist. inf., vol. 5, no. 2, pp. 139–148, 2024.
[6] y. karmani, y. s. belutowe, and e. r. nubatonis, “system monitoring tingkat kekeruhan air dan pemberian pakan ikan pada aquarium berbasis iot,” j. teknol. informasi) vol, vol. 6, no. 1, 2022.
[7] d. ferdianto, b. nur said, and r. yunus, “perancangan dan implementasi sistem pemantauan suhu, lampu otomatis dan pakan otomatis pada akuarium ikan hias berbasis iot,” edu elektromatika, vol. 4, no. 2, pp. 1–11, 2023.
[8] pemerintah republik indonesia, “peraturan pemerintah republik indonesia nomor 82 tahun 2001 tentang pengelolaan kualitas air dan pengendalian pencemaran air,” peratur. pemerintah tentang pengelolaan kualitas air dan pengendali. pencemaran air, pp. 1–22, 2001.
[9] permen-kp-75, “peraturan kelautan dan perikanan republik indonesia nomor no.75/permen-kp/2016 tentang pedoman umum pembesaran udang windu (penaeus monodon) dan udang vaname (litopenaeus vannamei),” kkp, pp. 1–43, 2016.
[10] m. a. i. f. priyatna and r. p. astutik, “monitoring kolam ipal dengan sistem iot berbasis wemos di rsi nyai ageng pinatih,” e-link j. tek. elektro dan inform., vol. 18, no. 1, pp. 87–95, 2023.
[11] f. fajryn, h. setiawan, and d. sartika, “digitalisasi sistem monitoring ph air pada instalasi pengelolaan air limbah laboratorium bspji palembang satker kementerian perindustrianberbasis android,” j. ilmu komput. dan sist. inf., vol. 9, no. 4, 2023.
Downloads
Published
How to Cite
Issue
Section
License
Copyright (c) 2025 Rizkika Fitri, Lilik Hari Santoso, Tegar Fadillah

This work is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License.