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Febrin Aulia Batubara Batubara
Bakti Viyata Sundawa
Muhammad Rusdi

Abstract





Problems of environmental damage caused by palm oil industry has become a global issue. This is often an obstacle to development of palm oil industry in Indonesia. In fact, millions of Indonesians work in palm oil sector and they are a source of state income from non-oil and gas. For this reason, efforts to support a sustainable palm oil industry need to be made. One of them is application of a smart system in palm oil industry. Soil analyzer tool is a smart system in palm oil industry. Rainfall, soil pH, temperature and humidity as well as lighting are environmental parameters that affect the growth and development of palm oil plants. Measurement results can be accessed and displayed in real-time based on LoRa technology. It is hoped that this soil analyzer will be a solution to environmental problems and related parties can determine mitigation actions in the most extreme conditions average of rainfall is 2.8 mm/day. Average of soil PH is 5.5. Average of light intensity is 10.146 lux. Average of temperature is 30.170C. Average of humidity is 70.57%.





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How to Cite
Batubara, F. A. B., Sundawa, B. V. . . and Rusdi, M. . . (2021) “Prototype Of Soil Analyzer Devices Based On Long Range (LoRa) Communication System”, Jurnal Mantik, 5(2), pp. 1361-1367. Available at: https://iocscience.org/ejournal/index.php/mantik/article/view/1557 (Accessed: 17April2026).
References
F. B. Salisbury and C. W. Ross, "Fisiologi Tumbuhan," ITB. Bandung, 1997.
H. Pasaribu, A. Mulyadi, and S. Tarumun, "Neraca air di perkebunan kelapa sawit di PPKS sub unit Kalianta Kabun Riau," Jurnal Ilmu Lingkungan, vol. 6, no. 2, pp. 99-113, 2012.
S. D. Tarigan, "Neraca Air Lahan Gambut Yang Ditanami Kelapa Sawit di Kabupaten Seruyan, Kalimantan Tengah," Jurnal Ilmu Tanah dan Lingkungan, vol. 13, no. 1, pp. 14-20, 2011.
M. Taufiq, H. Siswoyo, and W. Anggara, "Pengaruh tanaman kelapa sawit terhadap keseimbangan air hutan (studi kasus Sub das landak, das kapuas)," Jurnal Teknik Pengairan: Journal of Water Resources Engineering, vol. 4, no. 1, pp. 47-52, 2013.
I. Harahap and W. Darmosarkoro, "Pendugaan kebutuhan air untuk pertumbuhan kelapa sawit di lapang dan aplikasinya dalam pengembangan sistem irigasi," Jurnal Penelitian Kelapa Sawit, vol. 7, no. 2, pp. 87-104, 1999.
A. T. Maryani, "Pengaruh volume pemberian air terhadap pertumbuhan bibit kelapa sawit di pembibitan utama," Bioplantae, vol. 1, no. 2, pp. 64-74, 2012.
S. Sabiham and B. Pramudya, "Analisis lingkungan biofisik lahan gambut pada perkebunan kelapa sawit," Jurnal Hidrolitan, 2010.
S. Hardjowigeno, Ilmu tanah. Akademika Pressindo Jakarta, 2007.
p. I. Di kebun kwala sawit, "kajian sifat fisik dan kimia tanah hubungannya dengan produksi kelapa sawit (elaeis guineensis, jacq)."
I. Pahan, Panduan Teknis Budidaya Kelapa Sawit. Penebar Swadaya Grup, 2012.
S. Espressif, "ESP32 Series Datasheet," Espressif Systems, pp. 20-50, 2019.
H. Zhao, Z. Liu, G. Zhu, C. Shi, and Q. Xu, "A Flexible and Scalable Localization System for Off-the-Shelf LoRa Devices," in International Conference on Internet of Things as a Service, 2020, pp. 347-359: Springer.
U. Mehboob, Q. Zaib, and C. Usama, "Survey of IoT Communication Protocols Techniques, Applications, and Issues," xFlow Research Inc, Pakistan, 2016.