Optimalisasi Penggunaan Sensor Pada Sistem Penyiraman Tanaman Kangkung Menggunakan Metode WSN
Abstract
Keywords
References
F. Perdana, D. Hardinsyah, D. G. Masyarakat, and F. E. Manusia, “ANALISIS JENIS, JUMLAH, DAN MUTU GIZI KONSUMSI SARAPAN ANAK INDONESIA (Analysis of Type, Amount, and Nutritional Quality of Breakfast among Indonesian Children),” Jurnal Gizi dan Pangan, vol. 8, no. 1, pp. 39–46, 2013.
BPS, “Produksi Tanaman Sayuran 2021,” Badan Pusat Statistik. Accessed: Feb. 28, 2023. [Online]. Available: https://www.bps.go.id/indicator/55/61/1/produksi-tanamansayuran.html
Syafri Edi and Julistia Bobihoe, Budidaya Tanaman Sayuran. Jambi: Balai Pengkajian Teknologi Pertanian (BPTP) Jambi, 2010.
Muhamad Hanhan Nugraha, Widyantoro Widyantoro, Ajie Muhammad Luthfi, Anes Inda Rabbika, Abd Rohman, and Willy Muhammad Fauzi, “Computer-Aided Ergonomic Analysis for Digital Human Modelling of Farmers in Water Spinach Plantation Workstation,” SINTEK Jurnal, vol. 17, no. 1, Jun. 2023.
A. Annisa, C. Parawansa, A. T. Hanuranto, and S. Raniprima, “PERANCANGAN DAN IMPLEMENTASI DATABASE BUDIDAYA TANAMAN KANGKUNG DARAT DENGAN SISTEM INTERNET OF THINGS DESIGN AND IMPLEMENTATION OF WATER SPINACH CULTIVATION DATABASE BASED ON INTERNET OF THINGS SYSTEM,” in E-Proceeding of Engineering, 2021, pp. 5290–5298.
B. Android, N. Azis, M. S. Hartawan, and S. Amelia, “Rancang Bangun Otomatisasi Penyiraman dan Monitoring Tanaman Kangkung,” Jurnal IKRAITH-INFORMATIKA, vol. 4, no. 3, pp. 95–102, 2020.
P. Asriya and M. Yusfi, “Rancang Bangun Sistem Monitoring Kelembaban Tanah Menggunakan Wireless Sensor Berbasis Arduino Uno,” Jurnal Fisika Unand, vol. 5, no. 4, 2016.
U. Syafiqoh et al., “Pengembangan Wireless Sensor Network Berbasis Internet of Things untuk Sistem Pemantauan Kualitas Air dan Tanah Pertanian,” Jurnal Informatika: Jurnal Pengembangan IT (JPIT), no. 02, 2018.
A. D. Boursianis et al., “Smart Irrigation System for Precision Agriculture - The AREThOU5A IoT Platform,” IEEE Sens J, vol. 21, no. 16, pp. 17539–17547, Aug. 2021, doi: 10.1109/JSEN.2020.3033526.
L. Varandas, J. Faria, P. D. Gaspar, and M. L. Aguiar, “Low-cost IoT remote sensor mesh for large-scale orchard monitorization,” Journal of Sensor and Actuator Networks, vol. 9, no. 3, 2020, doi: 10.3390/JSAN9030044.
A. Ilmawan, H. Hanafi Ichsan, and D. Syauqy, “Wireless Sensor Network Sebagai Perangkat Akuisisi Data Suhu & Kelembapan Tanah Pada Tanaman Buah Naga,” Jurnal Pengembangan Teknologi Informasi dan Ilmu Komputer, vol. 5, no. 6, pp. 2443–2452, 2021, [Online]. Available: http://j-ptiik.ub.ac.id
G. Martinović and J. Simon, “Greenhouse microclimatic environment controlled by a mobile measuring station,” NJAS - Wageningen Journal of Life Sciences, vol. 70, pp. 61–70, Dec. 2014, doi: 10.1016/j.njas.2014.05.007.
F. A. Purnomo, N. M. Yoeseph, S. A. T. Bawono, and R. Hartono, “Development of air temperature and soil moisture monitoring systems with LoRA technology,” in Journal of Physics: Conference Series, IOP Publishing Ltd, Mar. 2021. doi: 10.1088/1742-6596/1825/1/012029.
S. Bagwari, “Impact of Internet of Things Based Monitoring and Prediction System Inprecision Agriculture,” Think India Journal, vol. 22, no. 16, 2019.
F. Yusran, D. Nur ramadan, and T. Nopiani Damayanti, “Sistem Monitoring pH Tanah dan Penyiraman Otomatis Tanaman Cerdas Berbasis IoT Mikrokontroler pada Bonsai Berjenis Santigi Soil pH Monitoring System and Automatic Watering of Smart Plant Based on IoT Microcontroller on Bonsai Santigi,” in e-Proceeding of Applied Science , 2023, pp. 316–323.
M. K. Saini and R. K. Saini, “Agriculture monitoring and prediction using Internet of Things (IoT),” in PDGC 2020 - 2020 6th International Conference on Parallel, Distributed and Grid Computing, Institute of Electrical and Electronics Engineers Inc., Nov. 2020, pp. 53–56. doi: 10.1109/PDGC50313.2020.9315836.
A. Rohman, Y. Yanti, A. Inda Rabbika, and W. Muhammad Fauzi, “Perancangan dan Pembuatan Purwarupa Sistem Penyiraman Otomatis Berbasis Arduino Nano,” Jurnal Sains, Teknologi dan Rekayasa, vol. 2, no. 2, pp. 12–31, 2022.
J. Jin, Y. Ma, Y. Zhang, and Q. Huang, “Design and implementation of an Agricultural IoT based on LoRa,” in MATEC Web of Conferences, EDP Sciences, Aug. 2018. doi: 10.1051/matecconf/201818904011.
P. D. P. Adi, A. Kitagawa, D. A. Prasetya, and A. B. Setiawan, “A Performance of ES920LR LoRa for the Internet of Things: A Technology Review,” in 3rd 2021 East Indonesia Conference on Computer and Information Technology, EIConCIT 2021, Institute of Electrical and Electronics Engineers Inc., Apr. 2021, pp. 1–7. doi: 10.1109/EIConCIT50028.2021.9431912.
Sugiyono, Metode Penelitian Pendidikan. Bandung: Alfabeta, 2011.
E Notes, “LoRa Physical Layer & RF Interface.” Accessed: Aug. 15, 2023. [Online]. Available: https://www.electronics-notes.com/articles/connectivity/lora/ radio-rf-interface-physical-layer.php
S. Sirait, D. Santoso, N. Sari, S. Hatta, and Hendris, “Efisiensi Teknologi Irigasi Sprinkler Di Lahan Kelompok,” Jurnal Rona Teknik Pertanian, 2022.
DOI: https://doi.org/10.30591/jpit.v9i1.5811
Refbacks
- There are currently no refbacks.

This work is licensed under a Creative Commons Attribution 4.0 International License.
JPIT INDEXED BY
![]() | ![]() | ![]() | ![]() |
![]() | ![]() | ![]() | |
This work is licensed under a Creative Commons Attribution 4.0 International License.