Digitalisasi Pertanian Presisi: Tinjauan Literatur pada Teknologi Sensor, Monitoring, dan Otomasi

Penulis

  • Parwito Parwito Universitas Ratu Samban, Bengkulu, Indonesia
  • Ismail Arifin STIKES Sapta Bakti, Bengkulu, Indonesia

DOI:

https://doi.org/10.58222/fp2ann81

Kata Kunci:

Desa Bajak 1, tik, komputer

Abstrak

Precision agriculture is a modern approach that leverages digital technologies to enhance efficiency, productivity, and sustainability in crop cultivation. Advances in sensor technologies, monitoring systems, and automation have enabled real-time data collection, land condition analysis, and precise input management. The background of this study stems from the increasing demand for more efficient and climate-adaptive agricultural practices, while reducing excessive resource use. The objective of this study is to review recent literature on the implementation of sensor technologies, monitoring systems, and automation in the digitalization of precision agriculture. The method employed is a systematic literature review, analyzing scientific publications, peer-reviewed articles, and technical reports from recent years to identify trends, applications, and challenges faced in precision agriculture practices. The review findings indicate that soil and crop sensors, IoT-based monitoring systems, and automation devices such as smart irrigation and crop-monitoring drones significantly enhance the accuracy of agricultural decision-making. These technologies support efficient nutrient management, pest control, and irrigation, while enabling more precise yield predictions. However, technology adoption still faces challenges such as high implementation costs, limited digital infrastructure, and the need for technical skills among farmers. In conclusion, the digitalization of precision agriculture through the integration of sensors, monitoring, and automation offers substantial potential to improve agricultural production efficiency. Adaptive implementation strategies and technical training support are key to successful technology adoption in the field.

Referensi

Almalki, F., Soufiene, B., Alsamhi, S., & Sakli, H. (2021). A Low-Cost Platform for Environmental Smart Farming Monitoring System Based on IoT and UAVs. Sustainability, 13, 5908. https://doi.org/10.3390/su13115908

Boursianis, A., Diamantoulakis, P., Liopa-Tsakalidi, A., Barouchas, P., Salahas, G., Karagiannidis, G., Wan, S., & Goudos, S. (2020). Internet of Things (IoT) and Agricultural Unmanned Aerial Vehicles (UAVs) in smart farming: A comprehensive review. Internet Things, 18, 100187. https://doi.org/10.1016/j.iot.2020.100187

Dhanaraju, M., Chenniappan, P., Ramalingam, K., Pazhanivelan, S., & Kaliaperumal, R. (2022). Smart Farming: Internet of Things (IoT)-Based Sustainable Agriculture. Agriculture. https://doi.org/10.3390/agriculture12101745

Shafi, U., Mumtaz, R., García-Nieto, J., Hassan, S., Zaidi, S., & Iqbal, N. (2019). Precision Agriculture Techniques and Practices: From Considerations to Applications. Sensors (Basel, Switzerland), 19. https://doi.org/10.3390/s19173796

Sishodia, R., Ray, R., & Singh, S. (2020). Applications of Remote Sensing in Precision Agriculture: A Review. Remote. Sens., 12, 3136. https://doi.org/10.3390/rs12193136

Ullo, S., & Sinha, G. (2021). Advances in IoT and Smart Sensors for Remote Sensing and Agriculture Applications. Remote. Sens., 13, 2585. https://doi.org/10.3390/rs13132585

Diterbitkan

2022-12-30

Terbitan

Bagian

article

Cara Mengutip

Digitalisasi Pertanian Presisi: Tinjauan Literatur pada Teknologi Sensor, Monitoring, dan Otomasi. (2022). SMART : Jurnal Teknologi Informasi Dan Komputer , 1(2), 49-54. https://doi.org/10.58222/fp2ann81

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