Smart Lighting Operation for The Growth of Bird's Eye Chili Plants Using Arduino Uno
DOI:
https://doi.org/10.33474/infotron.v4i1.22340Keywords:
Arduino Uno, Smart lighting, chili, BH1750, PlantAbstract
Unfavorable weather conditions, climate change, and pests can disturb chili cultivation. The "Prototype for Artificial Lighting Operation for the Growth of Chili Plants (Capsicum Frutescens L) Based on Arduino Uno" is designed to help farmers who lose land or experience crop failure due to unpredictable weather, which prevents plants from receiving optimal sunlight. Here, the researcher utilizes Arduino Uno in the control system to process data and determine the values obtained from the system. The light sensor (BH1750) detects light radiation (lux), and the temperature sensor (DS18B20) detects temperature (°C). White daylight LEDs are used for lighting. Testing is conducted using the static group comparison method to compare different groups or conditions of each treatment. This research involves creating a prototype of an artificial lighting device based on Arduino Uno, which can display data and control the necessary temperature and lighting. The device is tested thoroughly according to the programmed plan to determine the significance of its impact on the development and growth of chili plants. The results show that the greatest stem height increase occurred in the third treatment, with an average of 0.6 cm per day. However, by the 15th day, the plants tended to slow down, stopping growth on the 38th day and starting to turn yellow on the 40th day. The greatest branch increase occurred in the second treatment (using the device with the door open), with an average of 2 branch nodes per day.
References
Lisdayani, Effendy, and M. Mappatoba, “FAKTOR-FAKTOR YANG MEMENGARUHI PERMINTAAN CABAI RAWIT DI KOTA PALU Factors That Influence Rawit Children Demand In The City Of Palu,” Agrotekbis, vol. 9, no. 1, pp. 240–248, 2021.
N. P. A. H. Z. A. R. N. R. K. S. Syafril Rahmat Umar, “Edukasi Pengaruh Pemberian Cahaya Lampu pada Proses Pertumbuhan Tanaman Cabai bagi Usaha Tani,” J. Bina Desa, vol. 4 (3), no. 3, pp. 394–400, 2022.
T. Wakahara and S. Mikami, “Adaptive nutrient water supply control of plant factory system by reinforcement learning,” SCIS ISIS 2010 - Jt. 5th Int. Conf. Soft Comput. Intell. Syst. 11th Int. Symp. Adv. Intell. Syst., pp. 1020–1025, 2020.
R. Gusti, “Dampak Perubahan Musim Terhadap Resiko Usaha Tani Cabe Rawit (capsium frutencens) Di Desa Allu Tarowang Kecamatan Tarowang Kabupaten Jeneponto,” 2022.
C. Rozikin and A. Solichin, “Implementasi Algoritma Genetika dan Regresi Linier Berganda Untuk Prediksi Persediaan Bahan Makanan Pada Restoran Cepat Saji Implementation Of Genetic Algorithm and Multi-Linear Regression For Predicting Food Supplies At Fast Food Restaurants,” Semin. Nas. Multidisiplin Ilmu 2017, no. April, pp. 10–17, 2017.
R. E. Nurmaeli and M. Taifur, “Analisis Penentuan Kandungan Gas Oksigen (O2) Fotosintesis Tanaman Gelombang Cinta (Anthuriumsp) Pada Variasi Daya Lampu,” Taman Vokasi, vol. 1, no. 1, pp. 490–499, 2015, doi: 10.30738/jtvok.v3i1.265.
E. S. Wirateruna, M. J. Afroni, and A. F. Ayu, “Implementation of PSO algorithm on MPPT PV System using Arduino Uno under PSC,” Int. J. Artif. Intell. Robot., vol. 5, no. 1, pp. 13–20, 2023, doi: 10.25139/ijair.v5i1.6029.
G. Setiawan, “SMART FARMING TANAMAN SELADA (Romaine) DENGAN SISTEM AEROPONIK BERBASIS IOT,” Informatics, Electr. Electron. Eng., vol. 1, no. 1, p. 37, 2021, doi: 10.33474/infotron.v1i1.11355.
N. H. Purwanti, “Kualitas Benih Cabai Rawit Pada Perbedaan Warna Pemanenan Buah, Metode Ekstraksi dan Lama Penyimpanan,” J. Stud. Agroteknologi, vol. 1, no. 3, pp. 2–14, 2022.
M. A. Azzani, B. Minto Basuki, and E. Noerhayati, “Sistem Kontrol Suhu dan Kelembaban Tanah Pada Irigasi Tetes Berbasis Internet of Things (IoT) Pada Tanaman Selada Merah,” Sci. Electro, vol. nn, No. nn, pp. 1–8, 2023.
V. V Ponggawa, J. F. Makal, and R. Lumbu, “Pemodelan Sistem Kontrol untuk Budidaya Tanaman Cabai,” J. Teknol. Infrastruktur Berkelanjutan, vol. 1, no. 1, pp. 25–37, 2018, [Online]. Available: http://p3m.polimdo.ac.id/jurnal/index.php/JTIB/article/view/Ponggawa
A. R. Sandag, D. Ludong, and H. Rawung, “Pemberian Cahaya Tambahan Dengan Lampu Hid Dan Led Untuk Merespon Waktu Pembungaan Tomat Cherry (Solanum Liycopersicum Var Cerasiforme) Di Dalam Rumah Tanaman,” Cocos, vol. 1, no. 8, 2017.
S. Nurhalimah, A. M. Yusa, and A. Fahmi, “Rancang Bangun Sistem Monitoring KelembapanTanah dengan Konsep Smart Farming untuk Budidaya Tanaman Cabai Rawit Berbasis Internet of Things (IOT),” Softw. Dev. Digit. Bus. Intell. Comput. Eng., vol. 1, no. 02, pp. 49–54, 2023, doi: 10.57203/session.v1i02.2023.40-54.
A. Rahayuningtyas and S. I. Kuala, “Pengaruh Suhu Dan Kelembaban Udara Pada Proses Pengeringan Singkong (Studi Kasus : Pengering Tipe Rak),” ETHOS (Jurnal Penelit. dan Pengabdian), p. 99, 2016, doi: 10.29313/ethos.v0i0.1663.
Downloads
Published
How to Cite
Issue
Section
License
Copyright (c) 2024 Muhammad Hamdu Supandri, Efendi S Wirateruna, Bambang Minto Basuki

This work is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License.


