Pengembangan Aplikasi Monitoring dan Kontrol untuk Greenhouse Hidroponik

Authors

  • Muhammad Aji Universitas Muhammadiyah Surakarta
  • Husni Thamrin Universitas Muhammadiyah Surakarta

DOI:

https://doi.org/10.35316/jimi.v10i1.1-14

Keywords:

Android Application, Hydroponics, Internet of Thinks

Abstract

This research aims to develop an Internet of Things (IoT) based monitoring and control application for hydroponic greenhouses using the Nutrient Film Technique (NFT) method for lettuce (Lactuca sativa L.). Hydroponics has emerged as an efficient solution for agricultural production in limited spaces, but environmental management challenges often remain a primary obstacle. The application is designed to automatically monitor and control environmental conditions, such as temperature, solution pH, and nutrient concentration, to reduce the risk of bolting that can diminish harvest quality. Software development was conducted using the Scrum methodology, which supports iterative and adaptive processes, employing Model-View-ViewModel (MVVM) architecture and clean architecture to create a modular and easily maintainable code structure. Jetpack Compose was utilized to generate a responsive and efficient user interface. Research findings demonstrate that the application offers key features including real-time monitoring through MQTT protocol, manual and automatic control, data history visualization in graphs, weather prediction, and hydroponic guidance. Application validation using the Aiken index showed a very high validity level (> 0.80), while black box testing ensured that all application functions operated by user requirements. This research is expected to improve hydroponic greenhouse management efficiency and significantly contribute to IoT technology development in the agricultural sector.

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References

[1] E. D. Purbajanti, W. Slamet, dan F. Kusmiyati, “Buku Hidroponic Florentina.” EF Press Digimedia, hal. 1–84, 2017.

[2] Susilawati, Dasar – Dasar Bertanam Secara Hidroponik. UNSRI PRESS, 2019.

[3] Adlian, K. Lenci Patty, dan F. Kirihio, “EFEKTIVITAS PEMBERIAN AIR CUCIAN BERAS TERHADAP PERTUMBUHAN DAN HASIL TANAMAN SELADA (Lactuca sativa L.),” Oryza J. Agribisnis dan Pertan. Berkelanjutan, vol. 8, no. 2, hal. 1–10, 2023.

[4] R. Nahari, E. D. Astuti, M. Pramudia, dan D. Rahmawati, “Fundamental Internet of Things (IOT) TEORI DAN APLIKASI,” Angew. Chemie Int. Ed. 6(11), 951–952., hal. 82–95, 2023.

[5] Firmansyah, B. Wibisana, I. M. Ziad, dan A. R. Sulthon, “Pertanian Cerdas Berbasis Internet of Things untuk Meningkatkan,” J. Pengabdi. Masy. Nusant., vol. 4, no. 20, hal. 80–85, 2024.

[6] H. Supriyono, A. Hibatullah, dan K. Harismah, “Turbidity Monitoring of Freshwater Using Internet of Things Platform Turbidity Monitoring of Freshwater Using Internet of Things Platform,” 2021, doi: 10.1088/1742-6596/1858/1/012048.

[7] M. Afwan, R. Septiana, R. Septiana, dan P. Aplikasi Pemantauan Rumah Kaca Pintar Berbasis, “Perancangan Aplikasi Pemantauan Rumah Kaca Pintar Berbasis Android,” J. Tek. Komput., vol. 1, no. 1, hal. 21–29, 2022, doi: 10.14710/jtk.v1i1.34573.

[8] R. N. Rohmah, Y. Oktafianto, H. Supriyono, dan A. Supardi, “PEST CONTROL SYSTEM ON AGRICULTURAL LAND USING IOT ELECTRONIC CONTROLLER,” J. Appl. Eng. Technol. Sci., vol. 5, no. 2, hal. 1011–1019, 2024.

[9] I. Pratiwi dan S. Y. Sari, “AMANDA ( Your Plant Monitoring Application ) Implementation Android Application Program Project Management Using Agile Scrum Method and Trello,” ICETIA 2023, vol. 02001, hal. 1–13, 2024.

[10] D. Gunawan dkk., “WEB-BASED LIBRARY INFORMATION SYSTEM IN MADRASAH IBTIDAIYAH,” vol. 2, no. 1, hal. 33–41, 2021.

[11] T. Poppendieck, H. Kniberg, R. Bunning, C. Thompson, dan J. Coplien, Scruminc. 2020.

[12] M. sari Zulvi, “Systematic Literature Review Penerapan Metodologi Agile Dalam Berbagai Bidang,” J. Komput. Terap., vol. 7, no. 2, hal. 300–313, 2021, doi: 10.35143/jkt.v7i2.5116.

[13] J. Kouraklis, MVVM in Delphi, no. October 2016. Berkeley, CA: Apress, 2016. doi: 10.1007/978-1-4842-2214-0_1.

[14] E. Milla dan M. Radonjić, “Analysis of Developing Native Android Applications Using Xml and Jetpack Compose,” Balk. J. Appl. Math. Informatics, vol. 6, no. 2, hal. 167–178, 2023, [Daring]. Tersedia pada: https://js.ugd.edu.mk/index.php/bjami/article/view/6019

[15] K. Rubin, Essential Scrum: A Practical Guide to the Most Popular Agile Process. Addison-Wesley Professional, 2019.

[16] L. R. Aiken, “Three coefficients for analyzing the reliability and validity of ratings,” Educ. Psychol. Meas., vol. 45, no. 1, hal. 131–142, 1985.

[17] S. Arikunto, Dasar dasar evaluasi pendidikan.pdf, Edisi 3. PT. Bumi Aksara, 2018.

[18] E. H. Kusuma Dewi, I. S. Pratama, A. S. Putera, dan C. Carudin, “Black Box Testing pada Aplikasi Pencatatan Peminjaman Buku Menggunakan Boundary Value Analysis,” STRING (Satuan Tulisan Ris. dan Inov. Teknol., vol. 6, no. 3, hal. 315, 2022, doi: 10.30998/string.v6i3.11958.

[19] F. N. Hasanah dan R. S. Untari, Rekayasa Perangkat Lunak. UMSIDA PRESS, 2020.

Published

18-06-2024

How to Cite

Aji, M., & Thamrin, H. (2024). Pengembangan Aplikasi Monitoring dan Kontrol untuk Greenhouse Hidroponik. Jurnal Ilmiah Informatika, 10(1), 1–14. https://doi.org/10.35316/jimi.v10i1.1-14

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