Sistem Pemantauan Nutrisi Air Pada Tanaman Hidroponik Model Rakit Apung


  • Fadhil Albar * Mail Universitas Islam Indonesia, Yogyakarta, Indonesia
  • Irving Vitra Paputungan Universitas Islam Indonesia, Yogyakarta, Indonesia
  • Kurniawan Dwi Irianto Universitas Islam Indonesia, Yogyakarta, Indonesia
  • (*) Corresponding Author
Keywords: Hydroponic; Floating Raft Hydroponic; TDS Sensor; pH Sensor; ESP32

Abstract

Hydroponics is an alternative method of planting that replaces soil media with water. This planting model can optimize land use which is currently getting less and less because hydroponics does not require a large planting space. Hydroponics has one of the planting techniques, namely the floating raft hydroponic model. Floating raft hydroponic has a planting style with a flat plane so that water can pool under the plant. This model is not only cheap, but also easy to make for ordinary people. However, this model has a drawback, namely the owner must always pay extra attention to the plants because floating raft hydroponic uses stagnant water without circulating water or air, this can make the nutrient content in the water poison the plants themselves. In addition, water levels can cause fungus on the roots of these hydroponic plants. A system was created to monitor nutrient solution levels, water acidity levels, temperature values, humidity and light intensity. These parameters are monitored using several sensors, namely: Total Dissolved Solid (TDS) sensor, water pH sensor, water level sensor, light intensity sensor and temperature and humidity sensor controlled by a microcontroller with the ESP32 model. The results of the sensor recording are displayed on the blynk platform which can provide real time plant status. With this system the owner can monitor in real time and can increase awareness when caring for hydroponic plants with the floating raft hydroponic model.

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References

K. Yulianto, “AGROEKOLOGI : MODEL PERTANIAN BERKELANJUTAN MASA DEPAN,” Jurnal TAMBORA, vol. 1, no. 3, p. 46, Sep. 2016, doi: 10.36761/JT.V1I3.142.

“Kementerian Pertanian - Sektor Pertanian Masih Menjadi Kekuatan Ekonomi di Indonesia.” https://www.pertanian.go.id/home/?show=news&act=view&id=2564 (accessed Jul. 07, 2022).

Reno Suryani, Hidroponik Budi Daya Tanaman Tanpa Tanah. 2015.

I. S. Roidah, “PEMANFAATAN LAHAN DENGAN MENGGUNAKAN SISTEM HIDROPONIK,” Jurnal BONOROWO, vol. 1, no. 2, pp. 43–49, 2014, doi: 10.36563/BONOROWO.V1I2.14.

A. I.-J. P. Masyarakat/DIMAS and undefined 2016, “Wirausaha santri berbasis budidaya tanaman hidroponik,” scholar.archive.org, vol. 16, no. 2, 2016, Accessed: Jul. 08, 2022. [Online]. Available: https://scholar.archive.org/work/kxdjtqqtlbb6vocbmxx3pbwyhy/access/wayback/http://journal.walisongo.ac.id:80/index.php/dimas/article/download/1097/905

H. Penelitian dan Pengabdian Kepada Masyarakat and N. Arianty, “Pemanfaatan Pekarangan dalam Usaha Budidaya Sayuran Secara Hidroponik,” Prosiding Seminar Nasional Kewirausahaan, vol. 1, no. 1, pp. 182–186, Oct. 2019, doi: 10.30596/snk.v1i1.3604.

S. D. Rangian, J. J. Pelealu, E. L. Baideng, and J. Biologi, “Respon Pertumbuhan Vegetatif Tiga Varietas Tanaman Sawi (Brassica Juncea L.) pada Kultur Teknik Hidroponik Rakit Apung,” Jurnal MIPA, vol. 6, no. 1, pp. 26–30, May 2017, doi: 10.35799/JM.6.1.2017.15984.

J. A. Tropika, P. Studi, and A. Fakultas, “Identifikasi Jamur Penyebab Penyakit Utama pada Tanaman Selada (Lactuca sativa L.) Hidroponik,” ojs.unud.ac.id, vol. 10, no. 3, 2021, Accessed: Jul. 20, 2022. [Online]. Available: https://ojs.unud.ac.id/index.php/JAT/article/download/78332/41559

P. Pengatur et al., “Perancangan Pengatur Kandungan TDS dan PH pada Larutan Nutrisi Hidroponik Menggunakan Metode Fuzzy Logic,” ALINIER: Journal of Artificial Intelligence & Applications, vol. 1, no. 1, pp. 33–43, Mar. 2020, doi: 10.36040/ALINIER.V1I1.2520.

R. Dwiputra, R. E. Saputra, and C. Setianingsih, “PERANCANGAN SISTEM KENDALI DAN PEMANTAUAN TANAMAN HIDROPONIK BERBASIS INTERNET OF THINGS (IoT) Designing Control And Monitoring System For Hydroponic Based On Internet Of Things (IoT)”.

A. A. Endryanto, “KONTROL DAN MONITORING TANAMAN HIDROPONIK SISTEM NUTRIENT FILM TECHNIQUE BERBASIS IOT,” 2020, Accessed: Oct. 03, 2021. [Online]. Available: http://repository.untag-sby.ac.id/id/eprint/3244

L. Pamungkas, P. Rahardjo, I. A.-J. S. Vol, and undefined 2021, “RANCANG BANGUN SISTEM MONITORING PADA HIDROPONIK NFT (NURTIENT FILM TEHCNIQUE) BERBASIS IOT,” ojs.unud.ac.id, vol. 8, no. 2, 2021, Accessed: Oct. 23, 2021. [Online]. Available: https://ojs.unud.ac.id/index.php/spektrum/article/download/75392/40271

P. W. Ciptadi and R. H. Hardyanto, “Penerapan Teknologi IoT pada Tanaman Hidroponik menggunakan Arduino dan Blynk Android,” Jurnal Dinamika Informatika, vol. 7, no. 2, pp. 29–40, 2018, Accessed: Jul. 09, 2022. [Online]. Available: https://jdi.upy.ac.id/index.php/jdi/article/view/5

“IoT ESP8266 Lux Meter using BH1750 Light Sensor & Blynk.” https://how2electronics.com/iot-esp8266-lux-meter-using-bh1750-light-sensor-blynk/ (accessed Jul. 01, 2022).

“IoT Based TDS Meter using ESP8266 for Water Quality Monitoring.” https://how2electronics.com/iot-based-tds-meter-using-esp8266-for-water-quality-monitoring/ (accessed Jul. 01, 2022).

Perteka, P. D. B., Piarsa, I. N., & Wibawa, K. S. (2020). Sistem Kontrol dan Monitoring Tanaman Hidroponik Aeroponik Berbasis Internet of Things. Jurnal Ilmiah Merpati (Menara Penelitian Akademika Teknologi Informasi), 197-210.

Y. Setiawan, H. Tanudjaja, and S. Octaviani, “Penggunaan Internet of Things (IoT) untuk Pemantauan dan Pengendalian Sistem Hidroponik,” TESLA: Jurnal Teknik Elektro, vol. 20, no. 2, pp. 175–182, Feb. 2019, doi: 10.24912/TESLA.V20I2.2994.


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Submitted: 2022-07-10
Published: 2022-07-31
Abstract View: 1150 times
PDF Download: 956 times
How to Cite
Albar, F., Paputungan, I., & Irianto, K. (2022). Sistem Pemantauan Nutrisi Air Pada Tanaman Hidroponik Model Rakit Apung. Journal of Information System Research (JOSH), 3(4), 703-711. https://doi.org/10.47065/josh.v3i4.1843
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