Penguatan Literasi Smart Farming untuk Mendorong Inovasi Pertanian bagi Komunitas Petani Muda di Klaten, Jawa Tengah
DOI:
https://doi.org/10.54082/jippm.603Kata Kunci:
IoT, Pertanian, Petani Muda, Smart FarmingAbstrak
Smart farming memiliki potensi besar untuk mengatasi tantangan efisiensi pertanian dan memastikan ketahanan pangan. Konsep smart farming juga menawarkan solusi inovatif untuk mengubah teknik pertanian tradisional dan meningkatkan produktivitas pertanian dengan melibatkan penggunaan teknologi terkini seperti Internet of Things (IoT), cloud computing, dan machine learning. Smart farming mempunyai potensi untuk menarik generasi muda ke bidang pertanian. Kegiatan pengabdian ini melibatkan Komunitas Petani Muda Klaten yang memiliki peran sentral dalam menciptakan inovasi baru di bidang pertanian. Program pengabdian ini fokus pada pendampingan bagi para petani muda untuk mengenal lebih jauh tentang teknologi-teknologi terkini yang dapat digunakan di bidang pertanian, dan penguatan literasi smart farming. Hasil pengabdian kepada masyarakat mengindikasikan bahwa 52,08% petani setuju bahwa informasi berkenaan dengan smart farming yang disajikan para pengabdi komprehensif, mudah dipahami dan mampu meningkatkan pemahaman mereka tentang smart farming. Dari aspek literasi, 58,33% petani setuju bahwa program pendampingan yang dilakukan oleh tim pengabdi efektif meningkatkan literasi smart farming mereka, selain itu pemahaman mereka tentang smart farming juga semakin bertambah. Sementara itu dari aspek pengembangan keterampilan diperoleh bahwa 47,92% petani setuju bahwa pelatihan tentang implementasi IoT yang diberikan tim pengabdi bermanfaat dan bersifat praktis, serta meningkatkan keterampilan teknis mereka dalam teknologi smart farming.
Referensi
Alimad, N., Al-Tawaha, A. R. M., Thangadurai, D., Sangeetha, J., & Chavan, V. S. (2024). Mitigating climate change and ensuring food security through application of mycorrhiza in the climatesmart farming system. In Mycorrhizal technology: Managing plant stress and mitigating climate change using mycorrhizae (pp. 237-251). Apple Academic Press. https://doi.org/10.1201/9781003429708-16
BPS. (2023, 4 Desember 2023). Hasil pencacahan lengkap sensus pertanian 2023 - tahap i. Retrieved 15 Januari from https://www.bps.go.id/id/pressrelease/2023/12/04/2050/hasil-pencacahan-lengkap-sensus-pertanian-2023---tahap-i.html
Clapp, J., & Ruder, S.-L. (2020). Precision technologies for agriculture: Digital farming, gene-edited crops, and the politics of sustainability. Global Environmental Politics, 20(3), 49-69. https://doi.org/10.1162/glep_a_00566
Defranco, J. F., Kshetri, N., & Voas, J. (2023). 'Sensoring' the farm [Review]. Computer, 56(10), 108-112. https://doi.org/10.1109/MC.2023.3296762
Doshi, J., Patel, T., & Bharti, S. k. (2019). Smart farming using iot, a solution for optimally monitoring farming conditions. Procedia Computer Science, 160, 746-751. https://doi.org/https://doi.org/10.1016/j.procs.2019.11.016
Giua, C., Materia, V. C., & Camanzi, L. (2022). Smart farming technologies adoption: Which factors play a role in the digital transition? Technology in Society, 68, 101869. https://doi.org/https://doi.org/10.1016/j.techsoc.2022.101869
Güven, B., Baz, İ., Kocaoğlu, B., Toprak, E., Barkana, D. E., & Özdemir, B. S. (2023). Smart farming technologies for sustainable agriculture: From food to energy. In A sustainable green future: Perspectives on energy, economy, industry, cities and environment (pp. 481-506). Springer International Publishing. https://doi.org/10.1007/978-3-031-24942-6_22
Jansuwan, P., & Zander, K. K. (2021). Getting young people to farm: How effective is thailand’s young smart farmer programme? Sustainability, 13(21), 11611. https://www.mdpi.com/2071-1050/13/21/11611
Javaid, M., Haleem, A., Singh, R. P., & Suman, R. (2022). Enhancing smart farming through the applications of agriculture 4.0 technologies. International Journal of Intelligent Networks, 3, 150-164. https://doi.org/https://doi.org/10.1016/j.ijin.2022.09.004
Kalaiselvi, K., Anand, A. J., Tanwar, P., & Raza, H. (2023). Advanced technologies for smart agriculture [Book]. River Publishers. https://www.scopus.com/inward/record.uri?eid=2-s2.0-85175667430&partnerID=40&md5=84de07b78b2a6a6cf8cf319a3fbdf40d
Kementerian Pertanian. (2019). Peraturan menteri pertanian nomor 04 tahun 2019 tentang pedoman gerakan pembangunan sumber daya manusia pertanian menuju lumbung pangan dunia 2045. Jakarta
Klerkx, L., Jakku, E., & Labarthe, P. (2019). A review of social science on digital agriculture, smart farming and agriculture 4.0: New contributions and a future research agenda. NJAS - Wageningen Journal of Life Sciences, 90-91, 100315. https://doi.org/https://doi.org/10.1016/j.njas.2019.100315
MacPherson, J., Voglhuber-Slavinsky, A., Olbrisch, M., Schöbel, P., Dönitz, E., Mouratiadou, I., & Helming, K. (2022). Future agricultural systems and the role of digitalization for achieving sustainability goals. A review. Agronomy for Sustainable Development, 42(4), 70. https://doi.org/10.1007/s13593-022-00792-6
Mekala, M. S., & Viswanathan, P. (2017, 10-11 Feb. 2017). A novel technology for smart agriculture based on iot with cloud computing. 2017 International Conference on I-SMAC (IoT in Social, Mobile, Analytics and Cloud) (I-SMAC),
Paraforos, D. S., & Griepentrog, H. W. (2021). Digital farming and field robotics: Internet of things, cloud computing, and big data. In M. Karkee & Q. Zhang (Eds.), Fundamentals of agricultural and field robotics (pp. 365-385). Springer International Publishing. https://doi.org/10.1007/978-3-030-70400-1_14
Petani Muda Klaten. (2021). Profil: Komunitas petani muda klaten. https://www.petanimudaklaten.org/p/profil.html
Prajapati, J. B., Barad, R., Patel, M. B., Saini, K., Prajapati, D., & Engineer, P. (2023). Smart farming ingredients: Iot sensors, software, connectivity, data analytics, robots, drones, gis-gps. In Applying drone technologies and robotics for agricultural sustainability (pp. 31-49). IGI Global. https://doi.org/10.4018/978-1-6684-6413-7.ch003
Said Mohamed, E., Belal, A. A., Kotb Abd-Elmabod, S., El-Shirbeny, M. A., Gad, A., & Zahran, M. B. (2021). Smart farming for improving agricultural management. The Egyptian Journal of Remote Sensing and Space Science, 24(3, Part 2), 971-981. https://doi.org/https://doi.org/10.1016/j.ejrs.2021.08.007
Visconti, P., de Fazio, R., Velázquez, R., Del-Valle-Soto, C., & Giannoccaro, N. I. (2020). Development of sensors-based agri-food traceability system remotely managed by a software platform for optimized farm management. Sensors, 20(13), 3632. https://www.mdpi.com/1424-8220/20/13/3632
Zamora-Izquierdo, M. A., Santa, J., Martínez, J. A., Martínez, V., & Skarmeta, A. F. (2019). Smart farming iot platform based on edge and cloud computing. Biosystems Engineering, 177, 4-17. https://doi.org/https://doi.org/10.1016/j.biosystemseng.2018.10.014
Zhang, L., Dabipi, I. K., & Brown Jr., W. L. (2018). Internet of things applications for agriculture. In Internet of things a to z (pp. 507-528). https://doi.org/https://doi.org/10.1002/9781119456735.ch18
Unduhan
Diterbitkan
Cara Mengutip
Terbitan
Bagian
Lisensi
Hak Cipta (c) 2024 Zaenal Abidin, Adhi Kusumastuti, Samsudin Anis
Artikel ini berlisensi Creative Commons Attribution 4.0 International License.