Rekayasa Digitalisasi Pertanian Hidroponik NFT dengan Model Kendali Suhu, pH dan Electrical Conductivity (EC)

Sri Wahyuni, Mujib Wahyudi, Amin Rusidy

Abstract

Madura, which is nicknamed the island of salt, began to develop hydroponics, especially for the fulfillment of vegetables. So far, hydroponic practitioners have always checked the nutrients on their hydroponic plants twice every day to ensure that the plant's nutritional needs are met, besides that the temperature and pH of the water must also be maintained according to plant needs so that plants can grow and develop properly as expected. Controlling the temperature and pH of the water as well as the nutritional needs that are carried out routinely every day by manual method on hydroponic growing media is considered a hassle. Not everyone understands the technical details of care for the ideal conditions of plants that must be maintained, especially for hydroponic beginners. It is necessary to digitize agriculture, through controlling the plant media automatically based on temperature settings, the measurement of nutritional needs and the pH adjusting the types of vegetables planted. Temperature conditions are monitored using a DS18B20 waterproof sensor with a thermoelectric cooler as a temperature stabilizer actuator in ideal conditions. Meanwhile, the nutritional requirements are calculated based on the type of plant, the reading of potential hydrogen (pH) levels by the pH sensor and the electrical conductivity (EC) value by the EC and TDS sensors are continuously responded by the peristaltic pump to determine the amount of solution and ideal nutritional requirements for plant. The control method (PID) which is implemented in active / non-peristaltic pump activities to control temperature, pH of the solution and nutritional needs based on the EC value of the solution is more precise and only a few times an error with an error value ranging from 1 - 2 ml.

Keywords

agriculture; hydroponic; digital; control method

References

Aldrianto AY, Prasetyo HN, Industri FT. 2015. “Rancangan Otomasi Kontrol Temperatur Dan Ph Air Pada”. Tugas Akhir. 1(1):83. Institut Teknologi Sepuluh Nopember.

Asyiah S. 2013. “Kajian Penggunaan Macam Air Dan Nutrisi Pada Hidroponik Sistem DFT (Deep Flow Technique) Terhadap Pertumbuhan Dan Hasil Baby Kailan (Brassica Oleraceae Var. Alboglabra)”. Skripsi. Universitas Sebelas Maret.

Bapennas. 2019. “Rencana Pembangunan Jangka Menengah Nasional 2020-2024”. Rancangan Teknokratik, 14 Agustus,75.

Hasanuddin, R.S. 2019. “Sistem Kontrol Dan Monitoring Tanaman Hidroponik Secara Real Time Menggunakan Metode Fuzzy Inference System Model Tsukamoto”. Semantik. Vol.5, No.1, pp. 61-6

Ikhlas M, T ISSM, Sc M. 2018. “Perancangan Kendali Nutrisi Pada Hidroponik NFT ( Nutrient Film Technique ) Dengan Metode Pid Design of Controlling Nutrient in Hydroponic ( Nutrient Film Technique ) Using PID”. 5(1):79–85.

Khusnia RH, Sri W. 2019. “Monitoring And Control Web Based System for Peanut At The Green House”. Journal of Physics : Conference Series. Vol. 15 International Conference on Science and Technology

Pratiwi F. 2018. “Rancang bangun sistem monitoring pengairan hidroponik berbasis mobile application di bumi retawu farm marchelia fika pratiwi”. Skripsi. Institut Pertanian Bogor.

Puriandi, F. Desember 2013. “Proses Perencanaan Kegiatan Pertanian Kota Yang Dilakukan Oleh Komunitas Berkebun di Kota Bandung Sebagai Masukan Pengembangan Pertanian Kota di Kawasan Perkotaan”. Jurnal Perencanaan Wilayah dan Kota. 2013;24(3):227–40.

Putra G.D. 2018, “Pulau Madura : Pulau Garam Indonesia”. http://indonesiabaik.id/infografis/pulau-madura-pulau-garam-indonesia. Terakhir diakses 25 Mei 2020

Rahmat P. 2015. “Bertanam Hidroponik Gak Pake Masalah”. AgroMedia.

Rosliani R, Sumarni N. “Budidaya Tanaman Sayuran dengan Sistem Hidroponik”. Monografi. 2005;(27):1–38.

Sutiyoso Y. 2018. “100 Kiat Sukses Hidroponik”. Trubus Swadaya.

Yanuar A, Putra H, Pambudi WS. 2017. “Sistem Kontrol Otomatis PH Larutan Nutrisi Tanaman Bayam Pada Hidroponik Nft (Nutrient Film Technique)”. Jurnal Ilmiah Mikrotek. 2(4):11– 20.

DOI

https://doi.org/10.21107/rekayasa.v14i1.9217

Metrics

Refbacks

  • There are currently no refbacks.


Copyright (c) 2021 Sri Wahyuni, Mujib Wahyudi, Amin Rusydi

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