Peran Teknologi Pertanian Cerdas (Smart Farming) untuk Generasi Pertanian Indonesia
DOI:
https://doi.org/10.53863/kst.v6i02.1226Keywords:
Smart Agricultural Technology, Agricultural Digitalization, Agricultural EfficiencyAbstract
Smart Farming or digital farming is a smart solution in the agricultural sector that utilizes an Internet of Things (IoT) based network system to carry out automatic monitoring and control in agricultural areas. The results of smart farming need to be defined and evaluated in order to increase farmers' understanding that smart farming can produce something new and positive. The benefits of smart agriculture will provide better changes to farmers' income and productivity, as well as improve the structure of socio-economic conditions, especially rural farmers. The current problem for farmers is that in order to make appropriate and correct decisions for the farming community in cultivating crops, real-time data regarding changes in the weather at that time is needed. So, through smart agricultural technology, this helps farmers find out real data. The effectiveness of agricultural technology is influenced by farmers' awareness and willingness to use and adopt agricultural innovations. Some of the technologies included in smart farming technology that can be used for agricultural productivity and efficiency, one of which is Agri drones which can be operated to spray pest and disease killers (pesticides), use liquid/solid fertilizers and better irrigation so as to avoid the use of fertilizers and pesticides. products that exceed the recommendations given. The presence of smart agricultural technology will make Indonesian agricultural cultivation more effective and efficient in determining how large or small the production and production needs are. Smart farming technology can help make the work of farmers easier in farming and for young people who want to become entrepreneurs in agriculture. Smart farming technology is similar to the use of technology needed to attract young people to participate in the agricultural sector, especially for the growth of Indonesian agriculture. This article is a review of previous research which will be followed up with research regarding the application of smart agricultural technology
References
Ambarwari, A., Widyawati, D. K., & Wahyudi, A. (2021). Sistem Pemantau Kondisi Lingkungan Pertanian Tanaman Pangan dengan. Jurnal Rekayasa Sistem Dan Teknologi Informasi, 1(10), 496–503.
Arta, M. P. (2023). Rancang Bangun Sistem Kontrol dan Monitoring Suhu serta Kelembaban Proses Pengeringan Buah Vanili Menggunakan Kodular Berbasis IoT. 7(3), 25526–25535. https://repository.pnb.ac.id/9964/
Dwiyatno, S., Krisnaningsih, E., Ryan Hidayat, D., & Sulistiyono. (2022). S Smart Agriculture Monitoring Penyiraman Tanaman Berbasis Internet of Things. PROSISKO: Jurnal Pengembangan Riset Dan Observasi Sistem Komputer, 9(1), 38–43. https://doi.org/10.30656/prosisko.v9i1.4669
Engel, V. J. L., & Suakanto, S. (2016). Model Inferensi Konteks Internet of Things pada Sistem Pertanian Cerdas. Jurnal Telematika, 11(2), 49–54.
Farid, M., Ridwan, I., Adzima, A. F., & Anshori, M. F. (2021). Penggunaan Pesawat Tanpa Awak ( Drone ) Dalam Melakukan Pemantauan Dan Identifikasi Otomatis Pada. Jurnal Dinamika Pengabdian, 7(1), 191–201.
Febrianti, V. P., Permata, T. A., Humairoh, M., Putri, O. M., Amelia, L., Fatimah, S., & Khastini, R. O. (2021). Analisis Pengaruh Perkembangan Teknologi Pertanian Di Era Revolusi Industri 4.0 Terhadap Hasil Produksi Padi. Jurnal Pengolahan Pangan, 6(2), 54–60. https://doi.org/10.31970/pangan.v6i2.50
Muchtar, H., Zulfikar, M., & Ulhaq, H. (2023). Rancang Bangun Smart Monitoring Farming pada Media Tanah Menggunakan Sistem IoT (Internet of Things). RESISTOR (Elektronika Kendali Telekomunikasi Tenaga Listrik Komputer), 6(2), 133–142.
Musa, S. F. P. D., Basir, K. H., & Luah, E. (2021). The Role of Smart Farming in Sustainable Development. International Journal of Asian Business and Information Management, 13(2), 1–12. https://doi.org/10.4018/ijabim.20220701.oa5
Rachmawati, R. R. (2020). Smart Farming 4.0 Untuk Mewujudkan Pertanian Indonesia Maju, Mandiri, Dan Modern (Smart Farming 4 . 0 to Build Advanced , Independent , and Modern Indonesian Agriculture). 38(2), 137–154.
Ruslianto, I., Ristian, U., & Hasfani, H. (2022). Sistem Pintar Untuk Anggur (Sipunggur) Pada Kawasan Tropis Berbasis Internet of Things (IoT). Jurnal Edukasi Dan Penelitian Informatika (JEPIN), 8(1), 121–127. https://doi.org/10.26418/jp.v8i1.52835
Sergius Jimmy, R. (2021). Implementasi Konsep Smart Farming Berbasis Iot Dan Manfaatnya. Jurnal Ilmu Teknik Dan Komputer, 5(1), 233–237.
Tasya, N., & Silvia, V. (2024). Peran Inovasi Teknologi Dalam Meningkatkan Efisiensi Ekonomi Pertanian. JSSTEK-Jurnal Studi Sains Dan Teknik, 2(1), 90–97.
Yudha, E. P., Syamsiyah, N., & Pardian, P. (2022). Penggunaan Drone Dalam Penyusunan Peta Rencana Tata Ruang Desa Cicapar, Kecamatan Banjarsari, Kabupaten Ciamis. Abdimas Galuh, 4(2), 984. https://doi.org/10.25157/ag.v4i2.7950
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