Kontrol Kualitas Kadar Air Laut Menggunakan Fuzzy LogicUntuk Habitat Ikan Kerapu

Anizar Indriani(1), Marhalim Fajri(2),
(1) Universitas Bengkulu  Indonesia
(2) Universitas Bengkulu 

Corresponding Author


DOI : https://doi.org/10.24036/jtev.v5i1.1.106151

Full Text:    Language : en

Abstract


The quality of the seawater content for the grouper fish habitat is very influential in the grouper fish development process. Seawater quality for grouper fish habitat depend on temperatur, salinity, acidity (pH), and turbidity of seawater. The quality of seawater can be control by circulation in and out of seawater in the fish pond. This cycle is required to maintain the desired quality of seawater at temperatur 24ºC- 31ºC, salinity 30-33 ppt, dissolved oxygen> 3,5 ppt, and pH 7,5-8,3. In previous studies seawater control systems have been carried out in the form of controls temperatur and pH quality. Other components quality of sea water such as salinity and turbidity due to fish food also influence seawater quality for grouper fish habitat. Component control of sea water in this paper include microcontroller, pump sea water, fresh water pump, sensor and etc.  In this paper we are focus on the controlling sea water quality to maintain the quality of grouper fish pools consisting of temperatur, salinity, acidity (pH), and turbidity of seawater. Input this data and the pH of the water read by the sensor will be processed with fuzzy logic to adjust the working of the salt water pump and the freshwater pump until it reaches the setpoint value. Turbidity and temperatur control using the ON-OFF system. The results show that of testing the sea water quality of control system using fuzzy logic in accordance with the calculation of mathematical defuzzyfication with an error of 0%. The values of salinity control system 31,14-32,98 PPT, pH 7,78-8,.2, temperatur 27ºC-29,98ºC, and turbidity level 9,90-14,85 NTU.

Keywords


Sistem Kontrol, Kadar Air Laut, Defuzzyfikasi, Fuzzy Logic,Sirkulasi Air Laut

References


Indriani, A., Hendra, Witanto, Y., Error of Assembly Microcontroller Arduino Mega and ATmega in the Kontrol of Temperatur for Heating and Cooling Sistem, Applied Mechanics and Materials, ISSN: 1662-7482, Vol. 842, pp 324-328, doi:10.4028/www.scientific.net/AMM.842.324 Online: 2016-06-2, Trans Tech Publications, Switzerland.

Indriani, A., Witanto, Y., Pratama, A., Supriyadi, S., Hendra, Tanjung, A., Performance of Control System Using Microcontroller for Sea WaterCirculation, IOP Conf. Series: Materials Science and Engineering 307 (2018) 012022 doi:10.1088/1757-899X/307/1/012022

Indriani, A.,Mesin Pengontrol Temperatur Air Aquarium otomatis Berbasis Mikrokontroller Untuk Budidaya Ikan Kerapu dengan Menggunakan Sumber Energi Terbarukan, Laporan Hibah Bersaing KEMENRISTEKDIKTI, 2015.

Indriani, A., Witanto, Supriyadi dan Hendra. 2017. Sistem Kontrol Kekeruhan dan Temperatur Air Laut Menggunakan Mikrokontroler Arduino Mega. Jurnal Teknik Mesin (JTM) Vol 06 N0 3. Bengkulu: Universitas Bengkulu.

Tajerin dan Mohammad Noor. 2005. Analisis Efesiensi Teknis Usaha Budidaya Pembesaran Ikan Kerapu Dalam Keramba Jaring Apung Di Perairan Teluk Lampung. Jurnal Ekonomi Pembangunan Vol 10 No 1. Jakarta: Pusat Pengolahan Produk dan Sosial Ekonomi Kelautan dan Perikanan.

Suryanto, Hidayat. 2011. Kajian Kualitas Air pada Budidaya Ikan Kerapu Macan Sistem Tumpang Sari Di Areal Mangrove. Jurnal ISSN 126-4265 Vol 39 No 2. Sulawesi Selatan: Balai Riset Budidaya Air Payau Maros.

Langkosono. 2007. Budidaya ikan Kerapu (Serranidae) pada Keramba Jaring Apung (KJA).Mataram: UPT Loka Pengembangan Bioindustri Laut.

Muzaqi, Nur. 2010. Rancang Bangun Alat Pengukur Kadar Garam Berbasis Mikrokontroler AT89551. Skripsi. Semarang: Universitas Semarang.

Aditya, Rizki, dan M. Taufiqurrahman. 2016. Monitoring Temperatur, Kadar pH dan Tingkat Salinitas Menggunakan Wahana Remotely Operated Vehicle (ROV) Sebagai Sarana Observasi Bawah Air. Surabaya: Fakultas Teknik dan Ilmu Kelautan Universitas Hang Tuah Surabaya.

Rahmadiansyah. 2016. Perancangan Sistem Pengontrol Water Treatment pada Tingkat kejernihan dan pH Air Skala Rumah Tangga. Skripsi. Bengkulu. Program Studi Teknik Elektro Universitas Bengkulu.

Nurazizah, Ramdhani dan Rizal. 2017. Rancang Bangun Termometer Digital Berbasis Sensor DS18B20 Untuk Penyandang Tunanetra. Jurnal ISSN 2355-9365 Vol 4 No 3.Bandung: Universitas Telkom

Ilson, S. Jon. (2005). “Sensor Technology Handbook”. Linacre House & Jordan Hill, UK.New York.

Kusumadewi, Sri & Purnomo, Hari. 2004. “Aplikasi Logiga Fuzzy untuk Pendukung Keputusan”. Yogyakarta. Graha Ilmu.


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