Rancang Bangun Sistem Monitoring Pada Kolam Budidaya Ikan Gurami Di Kawasan Tulungagung Sebagai Kontrol Kualitas Air Berbasis Internet Of Things

Ramadani, Mesita Evi (2021) Rancang Bangun Sistem Monitoring Pada Kolam Budidaya Ikan Gurami Di Kawasan Tulungagung Sebagai Kontrol Kualitas Air Berbasis Internet Of Things. Diploma thesis, Institut Teknologi Sepuluh Nopember.

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Abstract

Monitoring kualitas air pada budidaya ikan kolam air tawar merupakan hal yang penting dilakukan, karena kualitas ikan bergantung pada kondisi lingkungan perairan tempat hidupnya. Kondisi perairan yang buruk dapat mengganggu aktivitas ikan dan dapat menyebabkan kematian masal yang akan menurunkan produktivitas petani budidaya ikan air tawar. Suhu, kadar pH, dan kekeruhan air kolam merupakan parameter terukur yang merepresentasikan kualitas air yang optimal. Sistem monitoring kualitas air kolam budidaya ikan gurami ini dirancang dengan memasang sensor suhu, sensor pH, dan sensor kekeruhan. Nilai yang diperoleh dari pengukuran sensor kemudian diolah menggunakan mikrokontroler. Perancangan sistem menggunakan Modul wireless ESP32, dan membuat aplikasi pada Android sehingga hasil pengukuran dari sensor dimanfaatkan untuk menampilkan hasil monitoring yang terintegrasi secara online sebagai implementasi Internet of Things dan sistem ini dapat diakses melalui aplikasi pada smartphone untuk dapat memunculkan notifikasi untuk saran penggantian air kolam dan kontrol penggantian air kolam secara otomatis.
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Monitoring water quality in freshwater pond fish farming is an important thing to do because the quality of the fish depends on the conditions of the aquatic environment in which it lives. Terrible water conditions can interfere with fish activities and can cause mass mortality that will reduce the productivity of freshwater fish farming farmers. Temperature, pH level, and turbidity of fish pond water are measured parameters that represent optimal water quality. The monitoring system of fish pond water quality was designed by installing a temperature sensor, pH sensor, and turbidity sensor. The value obtained from the sensor measurement is then processed using a microcontroller. The system design uses the ESP32 wireless module. It makes an application on Android so that the measurement results from the sensors are used to display integrated monitoring results online as an implementation of the Internet of Things. Then the system can be accessed through an application on a smartphone to show notifications for suggestions for replacement of water and controlling pool water replacement automatically.

Item Type: Thesis (Diploma)
Uncontrolled Keywords: monitoring, water quality, sensor, Internet of Things, monitoring, kualitas air, sensor, Internet of Things
Subjects: H Social Sciences > HD Industries. Land use. Labor > HD9706.2 Measuring instruments
Q Science > QC Physics > QC271 Temperature measurements
T Technology > TD Environmental technology. Sanitary engineering
T Technology > TD Environmental technology. Sanitary engineering > TD375 Turbidity--Measurement.
Divisions: Faculty of Vocational > Instrumentation Engineering
Depositing User: Mesita Evi Ramadani
Date Deposited: 23 Aug 2021 04:01
Last Modified: 23 Aug 2021 04:01
URI: http://repository.its.ac.id/id/eprint/88688

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