Sistem Monitoring dan Kontrol Aeroponik Menuju Smart Greenbox untuk Tanaman Selada berbasis IoT
Abstract
Horticultural commodities are agriculture that has a lot of demand in the market. Based on this, a planting system with the aeroponic method was made with an IoT-based monitoring and control system so that its growth is maintained. A system with complex planning is needed to simplify human life. Then a remote monitoring and control system was designed with IoT technology in the aeroponic method. The way this tool works is to send sensor data from the Node MCU via the internet to the cloud and the data is stored in real-time in the Firebase, the data is sent to the Android platform so that the data can be read by the user and the data is sent to a Google spreadsheet automatically which will later be analyzed. Will update data every 15 minutes. In this study, calibration of the DHT11 sensor with HTC Digital obtained an accuracy of 95.5% humidity and 97% temperature, the LDR sensor with LUX meter obtained an accuracy rate of 75.163%, pH sensor with pH meter 97.33%, ultrasonic sensor and ruler. get 100% accuracy, the bandwidth used is 20 Mbps. The network quality test is delayed, with 3 different test times, busy hours (19.00 - 23.00 WIB), empty hours (01.00 - 03.00 WIB), normal hours (12.00 - 14.00 WIB). From network testing, the minimum delay is 0.255 seconds, and the maximum is 0.291 seconds. The results of testing tools during seeding, lettuce plants can grow well.
Downloads
References
Y. Y. Tuhumena, W. B. Parera, and R. Kaplale, “PERMINTAAN SAYURAN DAUN DI NEGERI PESISIR DAN PEGUNUNGAN KECAMATAN LEITIMUR SELATAN (STUDI KASUS NEGERI RUTONG DAN NEGERI NAKU) LEAF VEGETABLES IN DOMESTIC DEMAND AND COASTAL MOUNTAINS SOUTH DISTRICT LEITIMUR (CASE STUDY OF DOMESTIC AND FOREIGN NAKU RUTONG).”
Direktorat Jenderal Holtikultura, “Pedoman Teknis Peningkatan Produksi, Produktivitas Dan Mutu Produk Hortikultura Berkelanjutan Tahun 2014,” p. 88, 2013.
S. L. H. Siregar and M. Rivai, “Monitoring dan Kontrol Sistem Penyemprotan Air Untuk Budidaya Aeroponik Menggunakan NodeMCU ESP8266,” Jurnal Teknik ITS, vol. 7, no. 2, 2019, doi: 10.12962/j23373539.v7i2.31181.
G. H. Indrajaya, M. Ramdhani, and M. A. Murti, “Rancang Bangun Total Dissolve Solids (tds) Meter Pada Tanaman Aeroponik Berbasis Internet Of Things (iot),” eProceedings of Engineering, vol. 6, no. 3, pp. 10105–10111, 2019.
D. Aribowo, G. Priyogi, and S. Islam, “APLIKASI SENSOR LDR (LIGHT DEPENDENT RESISTOR) UNTUK EFISIENSI ENERGI PADA LAMPU PENERANGAN JALAN UMUM”.
S. V. Asprillia, A. Darmawati, and W. Slamet, “Pertumbuhan dan produksi selada (Lactuca sativa l.) pada pemberian berbagai jenis pupuk organik,” Journal of Agro Complex, vol. 2, no. 1, p. 86, Feb. 2018, doi: 10.14710/joac.2.1.86-92.
S. A. Adimihardja, G. Hamid, and E. Rosa, “Pengaruh Pemberian Kombinasi Kompos Sapi dan Ferimix Terhadap Pertumbuhan dan Produksi Dua Kultivar Tanaman Selada (Lactuca sativa L.) Dalam Sistem Hidroponik Rakit Apung,” Jurnal Pertanian, vol. 4, no. 1, pp. 6–20, 2013.
R. Y. Endra, A. Cucus, and M. A. Wulandana, “Perancangan Aplikasi Berbasis Web Pada System Aeroponik untuk Monitoring Nutrisi Menggunakan Framework CodeIgniter,” vol. 11.
Fiqhi, Y. Prabowo, and G. Gata, “Sistem Aeroponik Berbasis Arduino Uno dan Komunikasi GSM Untuk Pemberian Larutan Nutrisi Untuk Budidaya Sayuran”, doi: https://doi.org/10.29207/resti.v1i2.40.
S. K. Dirjen, P. Riset, D. Pengembangan, R. Dikti, and I. Firman Maulana, “Penerapan Firebase Realtime Database pada Aplikasi E-Tilang Smartphone berbasis Mobile Android,” masa berlaku mulai, vol. 1, no. 3, pp. 854–863, 2017.
M. Fajar Wicaksono, “IMPLEMENTASI MODUL WIFI NODEMCU ESP8266 UNTUK SMART HOME,” 2017.
A. Satriadi and dan Yuli Christiyono, “PERANCANGAN HOME AUTOMATION BERBASIS NodeMCU.” [Online]. Available: https://ejournal3.undip.ac.id/index.php/transient
J. Eka Candra and A. Maulana Universitas Putera Batam, Penerapan Soil Moisture Sensor Untuk Desain System Penyiram Tanaman Otomatis.
F. Aziz and B. Suprianto, “Rancang Bangun Sistem Pengendalian Kelembapan pada Sistem Tanam Aeroponik Menggunakan Kontroler PID 595 RANCANG BANGUN SISTEM PENGENDALIAN KELEMBAPAN PADA SISTEM TANAM AEROPONIK MENGGUNAKAN KONTROLLER PID.”
M. Rusdan, S. Tinggi, and T. Bandung, “Analisis Quality of Service (QoS) Pada Jaringan Wireless (Studi Kasus: Universitas Widyatama).” [Online]. Available: https://www.researchgate.net/publication/338571285
INTERNATIONAL TELECOMMUNICATION UNION, “ITU-T End-user multimedia QoS categories,” 2001.
Bila bermanfaat silahkan share artikel ini
Berikan Komentar Anda terhadap artikel Sistem Monitoring dan Kontrol Aeroponik Menuju Smart Greenbox untuk Tanaman Selada berbasis IoT
Pages: 1845−1853
Copyright (c) 2023 Nyoman Karna, Rangga Naufal, Sevierda Raniprima, I Kadek Andrean Pramana Putra, Dewa Ayu Putu Rahyuni, I Ketut Parti

This work is licensed under a Creative Commons Attribution 4.0 International License.
Authors who publish with this journal agree to the following terms:
- Authors retain copyright and grant the journal right of first publication with the work simultaneously licensed under Creative Commons Attribution 4.0 International License that allows others to share the work with an acknowledgment of the work's authorship and initial publication in this journal.
- Authors are able to enter into separate, additional contractual arrangements for the non-exclusive distribution of the journal's published version of the work (e.g., post it to an institutional repository or publish it in a book), with an acknowledgment of its initial publication in this journal.
- Authors are permitted and encouraged to post their work online (e.g., in institutional repositories or on their website) prior to and during the submission process, as it can lead to productive exchanges, as well as earlier and greater citation of published work (Refer to The Effect of Open Access).





















