Perancangan Sistem IoT Untuk Smart Farming Pada Tanaman Cabai Dengan Sistem Integrasi Website
DOI:
https://doi.org/10.55606/jitek.v5i2.7642Keywords:
IoT, Smart Agriculture, Chili Crop, Monitoring, Automatic Irrigation, NotificationAbstract
The practice of chili farming in Indonesia is confronted with a number of challenges, including extreme climate conditions and limitations in irrigation management and harvest timing. The objective of this research is to design an Internet of Things (IoT) system capable of automatically and in real-time monitoring and controlling the environmental conditions of chili plants. The issues identified pertain to the suboptimal design of the manual irrigation system and the ad hoc assessment of fruit maturity. The practice of chili farming in Indonesia is confronted with a number of challenges, including extreme climate conditions and limitations in irrigation management and harvest timing. The objective of this research is to design an Internet of Things (IoT) system capable of automatically and in real-time monitoring and controlling the environmental conditions of chili plants. The issues identified pertain to the suboptimal design of the manual irrigation system and the ad hoc assessment of fruit maturity.
References
[1] A. Ahdiat, "Konsumsi cabai per kapita masyarakat Indonesia (2019–2023)," 2024. [Online]. Available: konsumsi-cabai-per-kapita-masyarakat-indonesia-(2019-2023)
[2] R. Alamsyah, E. Ryansyah, A. Y. Permana, and R. Mufidah, "Sistem penyiraman tanaman otomatis menggunakan logika fuzzy dengan teknologi Internet of Things berbasis ESP8266 dan aplikasi Blynk," J. Inform. dan Tek. Elektro Terapan, vol. 12, no. 2, 2024, doi: 10.23960/jitet.v12i2.4007.
[3] E. Alfonsius et al., "Sistem monitoring dan kontroling prototype penyiram tanaman otomatis berbasis IoT (Internet of Things)," Teknoinfo, vol. 18, no. 1, 2024. [Online]. Available: https://ejurnal.teknokrat.ac.id/index.php/teknoinfo/index
[4] Pusat Data dan Sistem Informasi Pertanian, "Analisis kinerja perdagangan cabai merah," Sekretariat Jenderal Kementerian Pertanian, 2024.
[5] D. Anggraini, A. Fery, and R. M. Fajri, "Penyortiran buah tomat berdasarkan tingkat kematangan menggunakan sensor warna TCS3200," unpublished.
[6] A. Ayu Aulia, L. D. Samsumar, E. Suryadi, P. Studi Teknologi Informasi, and F. Utm, "Sistem monitoring kelembaban dan otomatisasi penyiraman tanaman cabai berbasis Internet of Things (IoT)," J. Rekayasa Sistem Informasi dan Teknologi, vol. 2, no. 2, Nov. 2024.
[7] N. Effendi, W. Ramadhani, and F. Farida, "Perancangan sistem penyiraman tanaman otomatis menggunakan sensor kelembapan tanah berbasis IoT," J. CoSciTech (Computer Science and Information Technology), vol. 3, no. 2, pp. 91–98, 2022, doi: 10.37859/coscitech.v3i2.3923.
[8] S. Khoirie, "Penerapan IoT (Internet of Things) pada sistem irigasi sprinkler fogger tanaman selada," Laporan Tugas Akhir, Politeknik Enjiniring Pertanian Indonesia, 2022.
[9] K. J. Komputer, I. Teknologi, and D. Elektro, "Analisis performansi protokol MQTT pada sistem pemantauan kualitas udara ruangan berbasis IoT," vol. 8, no. 3, 2023.
[10] A. Ahdiat, "Konsumsi cabai per kapita masyarakat Indonesia (2019–2023)," n.d. [Online]. Available: konsum-si-cabai-per-kapita-masyarakat-indonesia-(2019-2023)
[11] P. Lestari and F. Antony, "Sistem penyiraman budidaya tanaman cabai berdasarkan pengukuran suhu dan kelembaban tanah," un-published.
[12] N. E. Lim and M. Silalahi, "Rancang bangun sistem e-administrasi berbasis CodeIgniter framework di KP2A Batam," J. COMASIE, vol. 8, no. 1, 2023.
[13] Z. Lubis, "Teknologi terbaru perancangan model alat penyiram tanaman dengan pengontrolan otomatis," J. Electr. Technol., vol. 6, no. 2, 2021.
[14] M. Manurung, "Analisis kinerja perdagangan cabai merah," Pusat Data dan Sistem Informasi Pertanian, Sekretariat Jenderal Kementerian Pertanian, 2024.
[15] I. Marina, D. Sukmawati, and M. L. Yulianti, "Analisis variabilitas iklim dan pengaruhnya terhadap produksi cabai merah di wilayah sentra hortikultura," Orchidagri, vol. 5, no. 1, 2025, doi: 10.35138/orchidagri.
[16] J. Naskah Publikasi, "Halaman pengesahan naskah publikasi tugas akhir mahasiswa prototype alat pengendali dan monitoring tanaman sebagai pengembangan smart farming berbasis Internet of Things (IoT)," unpublished.
[17] J. Pipit Nomor, S. Bandara, and S. Pinang, "Buletin Cuaca dan Iklim Stasiun Meteorologi Aji Pangeran Tumenggung Pranoto Edisi Maret 2023," unpublished.
[18] S. Prasetyo and S. Abdullah, "Rancang bangun penyiram tanaman otomatis berbasis Internet of Things menggunakan NodeMCU dan Telegram," J. Restikom: Riset Tek. Inform. dan Komputer, vol. 3, no. 2, pp. 51–59, 2021. [Online]. Available: https://restikom.nusaputra.ac.id
[19] E. D. Purnama, S. Auliana, B. R. S. Permana, A. Safaatulloh, and W. Cahyadi, "Penerapan framework Laravel untuk sistem informasi raport online pada SDN Saruni 2 Pandeglang," INFOTECH J., vol. 10, no. 2, pp. 239–244, 2024, doi: 10.31949/infotech.v10i2.10869.
[20] L. Rahmawati and S. Sumarsono, "Desain pengembangan website dengan arsitektur Model View Controller pada framework Laravel," J. Teknol. dan Sist. Inform. Bisnis, vol. 6, no. 4, pp. 785–790, 2024, doi: 10.47233/jteksis.v6i4.1497.
[21] M. Y. Ridwan, L. Nurpulaela, I. A. Bangsa, S. Karawang, J. H. Ronggo Waluyo, J. Timur, and K. Karawang, "Pengaplikasian sistem OIT pada alat penyiram tanaman otomatis berbasis Arduino Nano," n.d. [Online]. Available: www.jurnalteknik@unisla.ac.id/index.php/elektronika
[22] M. Rizal Efendi and L. Vidya Yovita, "Analisis penanganan SQL injection pada basis data MySQL dengan framework Code Igniter dan PHP," 2016.
[23] D. P. Romadan, V. Arinal, F. M. Sarimole, and T. Tundo, "Prototipe sistem monitoring kelembapan tanah pada tanaman cabai berbasis Internet of Things dengan metode fuzzy logic menggunakan NodeMCU ESP8266, Blynk dan Thingspeak," MALCOM: Indonesian J. Mach. Learn. Comput. Sci., vol. 5, no. 1, pp. 130–140, 2024, doi: 10.57152/malcom.v5i1.1600.
[24] W. Santoso, W. Nurjannah, M. Shudhuashar, A. T. Fadilah, M. D. Junas, and D. Handayani, "The development of Telegram Bot API to maximize the dissemination process of Islamic knowledge in 4.0 era," J. Tek. Inform., vol. 15, no. 1, pp. 52–62, 2022, doi: 10.15408/jti.v15i1.24915.
[25] N. D. A. Sayekti Harits Suryawan, N. D. Adinda, S. Erlansyah, A. Damari, and M. R. Adam, "Pengembangan website sistem penggajian (SIMPEG) di PDAM Batiwakkal Berau," J. Suara Pengabdian 45, vol. 2, no. 4, pp. 77–84, 2023, doi: 10.56444/pengabdian45.v2i4.1269.
[26] I. Surya Ramadhan, R. Sastra, and M. Iqbal, "Alat penyiram tanaman otomatis berbasis Arduino Uno dan NodeMCU," Sains Tek. Elektro, vol. 4, no. 1, 2023. [Online]. Available: http://jurnal.bsi.ac.id/index.php/insantek12
[27] F. Susanto, N. Komang Prasiani, and P. Darmawan, "Implementasi Internet of Things dalam kehidupan sehari-hari," J. IMAGINE, vol. 2, no. 1, 2022. [Online]. Available: https://jurnal.std-bali.ac.id/index.php/imagine
[28] P. A. Wulandari, P. Rahima, and S. Hadi, "Rancang bangun sistem penyiraman otomatis berbasis Internet of Things pada tanaman hias sirih gading," J. Bumigora Inf. Technol. (BITe), vol. 2, no. 2, pp. 77–85, 2020, doi: 10.30812/bite.v2i2.886.
[29] Y. Maulana and D. Supardi, "Sistem pengawasan kelembaban tanah dan penyiraman tanaman otomatis berbasis IoT via Telegram," J. CoSciTech (Computer Science and Information Technology), vol. 3, no. 3, pp. 464–471, 2022, doi: 10.37859/coscitech.v3i3.4429.
[30] T. T. Y. Yudiana, T. S. Patma, and M. Fauziyah, "Implementasi sensor kelembapan tanah penyiram tanaman otomatis berbasis mikrokontroler dengan IoT," J. Elektronika dan Otomasi Industri, vol. 11, no. 1, pp. 1–13, 2024, doi: 10.33795/elkolind.v11i1.3025.
Downloads
Published
How to Cite
Issue
Section
License
Copyright (c) 2025 Jurnal Informatika Dan Tekonologi Komputer (JITEK)

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