Analisis Penerapan Internet Of Things (IoT) dalam Pertanian Cerdas di Era 4.0

Authors

  • Nida Rahma Lestari Universitas Teknologi Digital
  • Reza
  • Yehezkiel
  • Harry

DOI:

https://doi.org/10.29408/jit.v9i1.33209

Keywords:

Internet Of Things, smart farming, agriculture, environmental sensors

Abstract

The development of Internet of Things (IoT) technology has had a major impact on various fields, including agriculture. This technology enables monitoring, control, and decision-making processes to be carried out automatically using sensors and systems connected to a network. This study aims to analyze the application of IoT technology in smart agriculture in Indonesia and globally using the Narrative Literature Review method. The method used was to review 17 nationally accredited (SINTA 3-5) and international journals published between 2019 and 2025. The results showed that the application of IoT in agriculture focused on monitoring soil moisture, air temperature, automatic irrigation control, and monitoring the quality of the plant environment. The application of Internet of Things (IoT) technology in agriculture has been proven to increase resource utilization efficiency, crop productivity, and work process effectiveness. In addition, one of the studies reviewed reported that the application of an IoT-based fertilization system was able to reduce fertilizer use by up to 49% for certain commodities. However, there are still several challenges, such as high implementation costs, network infrastructure conditions, data security issues, and farmers' limited technological knowledge. In conclusion, the application of IoT in agriculture has great potential to support digital transformation in Indonesia's agricultural sector towards a more sustainable and efficient agricultural system.

References

[1] I. P. Sari, A. Novita, A.-K. Al-Khowarizmi, F. Ramadhani, and A. Satria, “Pemanfaatan Internet of Things (IoT) pada Bidang Pertanian Menggunakan Arduino UnoR3,” Blend Sains J. Tek., vol. 2, no. 4, pp. 337–343, June 2024, doi: 10.56211/blendsains.v2i4.505.

[2] D. Y. Setyawan and R. Syahputri, “Internet of Things (IoT) Application in Smart Farming to Optimize Tomato Growth”.

[3] M. Walid, A. Susanto, and F. Lazim, “SISTEM SMART PLANT CARE BERBASIS IoT UNTUK MENINGKATKAN PRODUKTIVITAS TANAMAN PADI,” vol. 4, no. 3, 2025.

[4] I. Gunawan and H. Ahmadi, “Sistem Monitoring Dan Pengabutan Otomatis Berbasis Internet Of Things (IoT) Pada Budidaya Jamur Tiram Menggunakan NodeMCU dan Blynk,” Infotek J. Inform. Dan Teknol., vol. 4, no. 1, pp. 79–86, Jan. 2021, doi: 10.29408/jit.v4i1.2997.

[5] S. U. Haj, R. T. Adek, and R. Suwanda, “Implementasi Sistem Irigasi Berbasis Internet of Things (IoT) Untuk Optimasi Penggunaan Air Pada Pertanian,” vol. 9, 2025.

[6] M. H. Widianto and B. Juarto, “Smart Farming Using Robots in IoT to Increase Agriculture Yields: A Systematic Literature Review,” J. Robot. Control JRC, vol. 4, no. 3, pp. 330–341, May 2023, doi: 10.18196/jrc.v4i3.18368.

[7] A. T. Alamsyah, S. Syarif, and E. Saepuddin, “Implementasi BTS IoT dengan ESP Now pada Lahan Pertanian Terbuka,” 2024.

[8] D. Megah Sari, J. Jumardi, and N. Rasjid, “Protoptype Pengairan Sawah dan Monitoring Kualitas PH Tanah Berbasis IOT,” Infotek J. Inform. Dan Teknol., vol. 5, no. 2, pp. 240–251, July 2022, doi: 10.29408/jit.v5i2.5749.

[9] A. Ambarwari, Dewi Kania Widyawati, and Anung Wahyudi, “Sistem Pemantau Kondisi Lingkungan Pertanian Tanaman Pangan dengan NodeMCU ESP8266 dan Raspberry Pi Berbasis IoT,” J. RESTI Rekayasa Sist. Dan Teknol. Inf., vol. 5, no. 3, pp. 496–503, June 2021, doi: 10.29207/resti.v5i3.3037.

[10] S. Wulandari and K. M. Afriyanto, “Perancangan Smart Sistem Reminder dan Monitoring Pertanian Terintegrasi Berbasis IoT: Perancangan Smart Sistem Reminder dan Monitoring Pertanian Terintegrasi Berbasis IoT,” J. Sci. Innov. Technol. SINTECH, vol. 3, no. 1, pp. 7–14, Jan. 2023, doi: 10.47701/sintech.v3i1.2529.

[11] P. A. C. Setiawan, N. I. Er, and G. Sukadarmika, “Pertanian Vertikal Pintar: Peran IoT dalam Mewujudkan Keberlanjutan dan Efisiensi Sumber Daya,” Maj. Ilm. Teknol. Elektro, 2025.

[12] A.-R. H. Mastul, A. Awae, Z. J. Bara, and Y. Yaro, “The Use of IoT on Smart Agriculture in the Philippines: A Narrative Review,” Bincang Sains Dan Teknol., vol. 2, no. 03, pp. 98–107, Sept. 2023, doi: 10.56741/bst.v2i03.416.

[13] D. Y. Setyawan and R. Marjunus, “Automasi dan Internet of Things (IoT) pada Pertanian Cerdas: review artikel pada Jurnal Terakreditasi Kemenristek”.

[14] I. Gunawan, M. Sadali, H. Ahmadi, L. K. Wijaya, and S. Ermawati, “Implementasi Internet Of Things (IOT) Untuk Monitoring Kualitas Tanah Tanaman Herbal Dengan Integrasi QR Code,” Infotek J. Inform. Dan Teknol., vol. 8, no. 2, pp. 426–434, July 2025, doi: 10.29408/jit.v8i2.31101.

[15] J. Doshi, T. Patel, and S. K. Bharti, “Smart Farming using IoT, a solution for optimally monitoring farming conditions,” Procedia Comput. Sci., vol. 160, pp. 746–751, 2019, doi: 10.1016/j.procs.2019.11.016.

[16] F. Stefwa Rifa’i Rizky Dimas Arifta, N. Akbar Rozaq Rais, and S. Rokhmah, “Rancang Bangun Teknologi Internet of Things (IoT) Dalam Sistem Monitoring Kelembaban Tanah dan Pemupukan Tanaman Terjadwal,” DutaCom, vol. 17, no. 1, pp. 67–81, May 2024, doi: 10.47701/dutacom.v17i1.3807.

[17] S. R. Zulhaq, P. Gunoto, and E. Susanti, “SISTEM PEMANTAUAN NUTRISI PADA TANAMAN BERBASIS INTERNET OF THINGS (IoT),” vol. 8, 2025.

[18] A. Sudianto, B. A. C. Permana, Muhammad Wasil, and Harianto, “Penerapan Sistem Payment Gateway Pada E-Commerce Sebagai Upaya Peningkatan Penjualan”, INFOTEK, vol. 8, no. 1, pp. 271–279, Jan. 2025. doi: 10.29408/jit.v8i1.28323

Downloads

Published

20-01-2026

How to Cite

Lestari, N. R., Permana, R. R., Rotty, Y. T., & Fitrian, H. P. (2026). Analisis Penerapan Internet Of Things (IoT) dalam Pertanian Cerdas di Era 4.0. Infotek: Jurnal Informatika Dan Teknologi, 9(1), 231–239. https://doi.org/10.29408/jit.v9i1.33209

Similar Articles

1 2 3 4 5 6 7 8 9 > >> 

You may also start an advanced similarity search for this article.