Dissolved Oxygen Regulatory System Using Fuzzy Logic Method Based on Teensy Board Microcontroller

Fajar Budiman, Muhammad Rivai, Luthfi Riadhi, Devy Kuswidiastuti

Abstract


Dissolved oxygen in water becomes a critical factor in the cultivation of fish hatcheries that determines the success/failure rate in the process of improving the quality and quantity of fish hatcheries. Low dissolved oxygen levels cause deficient to the process of decomposition, reproduction, and growth of fish. In this study, a system that can regulate the levels of dissolved oxygen in water is designed and built by utilizing the Dissolved Oxygen Meter of AZ-8403 as a sensor. The percentage of oxygen in water is controlled by Fuzzy Logic implemented in the Teensy board microcontroller. When the oxygen level is below the setting point, the aerator is then activated to produce dissolved oxygen in the water. The test results conducted on the aquarium containing fish obtained error for the reading of dissolved oxygen sensor of 0.075%. The system response requires 1 minute to reach the setting point.

Keywords: dissolved oxygen, fuzzy logic control, teensy board.


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References


Wibisono, G.A., “Studi Kelayakan Investasi Pembuatan Perikanan Pembibitan Ikan Lele Dalam Perspektif Supply Chain Management”, Fakultas Sains dan Teknologi Universitas Islam Negeri Sunan Kalijaga, Yogyakarta, 2012

Yosanto, R.A., “Pembenihan dan Pembesaran Ikan Lele Sangkuriang Clarias sp. Di Unit Kerja Budidaya Air Tawar Wonocatur Cangkringan Sleman Yogyakarta”, Institut Pertanian Bogor, Bogor, 2015

Yusvarina, M., Sumarna., “Rancang Bangun Sistem Kontrol Kadar Oksigen di Dalam Air Pada Kolam Pembenihan Ikan Lele Mutiara di Unit Kerja Budidaya Air Tawar(UKBAT) Wonocatur Cangkringan, Sleman, Yogyakarta”, Jurnal Universitas Negeri Yogyakarta, Vol 5, No.7, 2016

Urbasa, P.A., “Dampak Kualitas Air Pada Budi Daya Ikan Dengan Jaring Tancap di Desa Toulimembet Danau Tondano”, Jurnal Budidaya Perairan, Vol. 3 No. 1: 59-67, jan 2015

Fujaya, Y., 2002. “Fisiologi ikan: dasar pengembangan teknologi perikanan”, Diterbitkan oleh Direktorat Jenderal Pendidikan Tinggi Depdiknas, Jakarta, 2002

Macqy, G., Pajarillo, J., Tenorio, J.E., Trambulo, E.M., Apsay, M.R.B., Chua, M.G., “Development of Dissolved Oxygen Monitoring System for Fish Ponds”, IEEE 3rd International Conference on System Engineering and Technology, Malaysia, 19 - 20 Aug 2013

Zulkarnain, M.R., “Sistem Monitoring Kualitas Air Sungai Yang Dilengkapi Dengan Data Logger Dan Komunikasi Wireless Sebagai Media Pengawasan Pencemaran Limbah Cair”, Prosiding Undergraduate Theses of Electrical Engineering, RSE 621.384 Zul s, Surabaya, Juni 2015

Resmana, Ferdinando., Thiang, Widagdo A.S., “Implementasi Fuzzy Logic Pada Microcontroller Untuk Kendali Putaran Motor DC”, Proceedings, Industrial Electronic Seminar, Surabaya, Oktober 1999

Masri’an., “Pengendalian Orientasi Webcam Sebagai Pengawas Ruangan Dengan Metode Kontrol Fuzzy”, Prosiding Undergraduate Theses of Electrical Engineering, Semarang, Januari 2011

Hidayati, Q., Prasetyo, M.E., ”Pengaturan Motor DC dengan Menggunakan Mikrokontroler Berbasis Fuzzy-PID” Jurnal Teknologi Terpadu, No.1 Vol. 4, Balikpapan, 2016

PJRC Electronic Project Components Available Worldwide, “Teensy 3.2 New Features”, , 2014




DOI: https://doi.org/10.12962/j25796216.v3.i1.74

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