PROTOTYPE SISTEM MONITORING DAN CONTROLLING BUDIDAYA MICROGREEN DENGAN MENGGUNAKAN WEBSITE BERBASIS INTERNET OF THINGS (IoT)
Abstract
The increase in population impacts the limited land for growing crops since it establishes residential areas. The Organic plants for human consumption also increase following population growth. A microgreen is one of some techniques in agriculture to overcome this problem. In this research, a monitor and control system was constructed for microgreen cultivation and integrated into a website through an internet connection. This system uses a DHT11 sensor as a temperature and humidity sensor in the plant environment, a soil moisture sensor as a plant media humidity sensor, and RTC DS3231 as time control. The sensor output should be processed by the Arduino Mega 2560 microcontroller and forwarded to the actuators automatically. This prototype will be able to reduce the air temperature by 3.65 ºC and maintain the humidity of the growing media to 43%. The outcome of this prototype showed that it could increase the growth of microgreens 8 cm long in 14 days.
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References
Febriani, V., Nasrika, E., Munasari, T., Permatasari, Y., & Widiatningrum, T. (2019). Analisis Produksi Microgreens Brassica oleracea Berinovasi Urban Gardening Untuk Peningkatan Mutu Pangan Nasional. Journal of Creativity Student, 2(2), 58-66.
https://doi.org/10.15294/jcs.v2i2.19840
Xiao, Z., Lester, G. E., Luo, Y., & Wang, Q. (2012). Assessment of vitamin and carotenoid concentrations of emerging food products: edible microgreens. Journal of agricultural and Food Chemistry, 60(31), 7644-7651.
https://doi.org/10.1021/jf300459b
PMid:22812633
Hilmy, R. H. (2021). Rancang Bangun Smart Grow Box Hidroponik untuk Pertumbuhan Tanaman Microgreen Berbasis Internet of Things. Power Elektronik: Jurnal Orang Elektro, 10(2), 41-47.
https://doi.org/10.30591/polektro.v10i2.2579
Rony Setiawan. (2021). Memahami apa itu Internet of Things. Retrieved from Dicoding Website : https://www.dicoding.com/blog/apa-itu-internet-of-things/.
Pramudita, G. B. (2019). Kontrol Relay Dan Kecepatan Kipas Angin Direct Current (Dc) Dengan Sensor Suhu Lm35 Berbasis Internet Of Things (Iot) (Doctoral dissertation, Universitas Islam Indonesia).
Husdi, H. (2018). monitoring kelembaban tanah pertanian menggunakan soil moisture sensor fc-28 dan arduino uno. ILKOM Jurnal Ilmiah, 10(2), 237-243.
https://doi.org/10.33096/ilkom.v10i2.315.237-243
As' adiya, L. (2020). Pengaruh Lama Penyinaran Lampu LED Merah, Biru, Kuning terhadap Pertumbuhan dan Kualitas Nutrisi Microgreen Kangkung (Ipomoea reptant) (Doctoral dissertation, Universitas Islam Malang).
https://doi.org/10.33474/folium.v5i1.10358
Yusro, M., Ma'sum, M., Muhamad, M., & Jaenul, A. (2021). Pengembangan Trainer Aplikasi Multi-Sensors (TAMS) Berbasis Arduino dan Raspberry Pi. Risenologi, 6(1), 77-85.
https://doi.org/10.47028/j.risenologi.2021.61.150
Pangestu, A., Mohammed, M. N., Al-Zubaidi, S., Bahrain, S. H. K., & Jaenul, A. (2021, March). An internet of things toward a novel smart helmet for motorcycle. In AIP Conference Proceedings (Vol. 2320, No. 1, p. 050026). AIP Publishing LLC.
https://doi.org/10.1063/5.0037483
Pangestu, A., Yusro, M., Djatmiko, W., & Jaenul, A. (2020). The Monitoring System of Indoor Air Quality Based on Internet of Things. Spektra: Jurnal Fisika Dan Aplikasinya, 5(2), 141-152.
https://doi.org/10.21009/SPEKTRA.052.06
Jaenul, A., Manfaluthy, M., Pramodja, Y., & Anjara, F. (2022). Pembuatan Sumber Listrik Cadangan Menggunakan Panel Surya Berbasis Internet of Things (IoT) dengan Beban Lampu dan Peralatan Listrik. Formosa Journal of Science and Technology, 1(3), 143-156.
https://doi.org/10.55927/fjst.v1i3.838
Salim, M. A. (2021). Budidaya Microgreens-sayuran kecil kaya nutrisi dan menyehatkan.
Tan, L., Nuffer, H., Feng, J., Kwan, S. H., Chen, H., Tong, X., & Kong, L. (2020). Antioxidant properties and sensory evaluation of microgreens from commercial and local farms. Food Science and Human Wellness, 9(1), 45-51.
https://doi.org/10.1016/j.fshw.2019.12.002
Zhang, X., Bian, Z., Yuan, X., Chen, X., & Lu, C. (2020). A review on the effects of light-emitting diode (LED) light on the nutrients of sprouts and microgreens. Trends in food science & technology, 99, 203-216.
https://doi.org/10.1016/j.tifs.2020.02.031
Meas, S., Luengwilai, K., & Thongket, T. (2020). Enhancing growth and phytochemicals of two amaranth microgreens by LEDs light irradiation. Scientia Horticulturae, 265, 109204.
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