Design of an Automatic Temperature and Humidity Control System Prototype for Rice Seedling Nursery
Abstract
Temperature and humidity control in rice nurseries is carried out to maintain the quality of rice seeds and avoid planting failure. Control is carried out using a prototype automatic device equipped with a water pump for watering and a mist maker plus a fan for humidifying. Based on observations, the prototype tool operates according to the given program. The water pump will turn on when the time shows 07:00 a.m. and 02:00 p.m. Meanwhile, the mist maker plus fan will turn on according to the regulated temperature and humidity conditions and can be applied to several regions in Indonesia. However, at the research site it will turn on when the temperature is > 27 °C and the humidity is < 70% and will turn off when the temperature reaches 27 °C and the humidity is 86%. The optimal air temperature for rice growth ranges from 19–27 °C with humidity in the RH range of 70–86%. Observations were carried out in two treatments, namely conditions with control and conditions without control. The results of seedling with control are better than without control. This can be seen from the growth of rice seedlings with control having a higher value than rice seedlings without control.
Downloads
References
Amarudin, Saputra, D.A., & Rubiyah. (2020). Rancang bangun alat pemberi pakan ikan menggunakan mikrokontroler. Jurnal Ilmiah Mahasiswa Kendali dan Listrik (JIMEL), 1(1), 7–13. https://doi.org/10.33365/jimel.v1i1.231
Andriawan, F. (2018). Penjadwal pakan ikan Koi otomatis pada kolam menggunakan RTC DS3231. ANTIVIRUS: Jurnal Ilmiah Teknik Informatika. 12(2), 8 pp. https://doi.org/10.35457/antivirus.v12i2.519
Aulia, R., Fauzan, R.A., & Lubis, I. (2021). Pengendalian suhu ruangan menggunakan FAN dan DHT11 berbasis Arduino. CESS (Journal of Computer Engineering, System and Science), 6(1), 30-38. https://doi.org/10.24114/cess.v6i1.21113
Aziz, F., & Suprianto, B. (2019). Rancang bangun sistem pengendalian kelembapan pada sistem tanam aeroponik menggunakan kontroller PID. Jurnal Teknik Elektro, 8(3), 595-602.
Darwis, M. (2020). Penambahan fitur tampilan LCD dan Micro SD Card Reader pada mesin laser engraver and cutter di laboratorium pengemudian listrik. Jurnal Pengelolaan Laboratorium Pendidikan, 2(1), 8-18. https://doi.org/10.14710/jplp.2.1.8-18
Devi, N.S., Erwanto, D., & Utomo, Y. B. (2018). Perancangan sistem kontrol suhu dan kelembaban pada ruangan budidaya jamur tiram berbasis IoT. MULTITEK Indonesia, 12(2), 104-113. https://doi.org/10.24269/mtkind.v12i2.1331
Iswahyudi, D., Anshory, I., & Jamaaluddin, J. (2020). Rancang bangun alat pengontrol kelembaban udara pada budidaya jamur menggunakan Arduino Uno dan ultrasonik mist maker. Jurnal Elektronika Listrik Telekomunikasi Komputer Informatika Sistem Kontrol (J-Eltrik), 2(1), 28-37. https://doi.org/10.30649/j-eltrik.v2i1.46
Kurniawan, A., & Lestari, H.A. (2020). Sistem kontrol nutrisi floating hydroponic system kangkung (Ipomea reptans) menggunakan Internet of Things berbasis Telegram. Jurnal Teknik Pertanian Lampung, 9(4), 326–335. http://dx.doi.org/10.23960/jtep-l.v9i4.326-335
Kurniawan, A., Saputra, T.W., & Ramadan, A. (2020). Sistem fertigasi rain pipe otomatis pada main nursery kelapa sawit (Elaeis guineensis Jacq) berbasis mikrokontroler Arduino Uno. Jurnal Teknik Pertanian Lampung, 9(3), 184–190. http://dx.doi.org/10.23960/jtep-l.v9i3.184-190
Margaret, S., Nafisah, N., Sujinah, S., Rumanti, I.A., & Yunani, N. (2024). Effect of drought periods on rice lines growth and yield. Jurnal Teknik Pertanian Lampung, 13(1), 49–59. http://dx.doi.org/10.23960/jtep-l.v13i1.49-59
Najmurrokhman, A., Kusnandar, K., & Amrulloh, A. (2018). Prototipe pengendali suhu dan kelembaban untuk cold storage menggunakan mikrokontroler Arduino ATmega328 dan sensor DHT11. Jurnal Teknologi, 10(1), 73–82.
Nasarudin, M., Putra, G.M.D., Abdullah, S.H., & Setiawati, D.A. (2020). Rancang bangun sistem kendali air irigasi menggunakan aplikasi smartphone berbasis mikrokontroler. Jurnal Teknik Pertanian Lampung, 9(3), 248–256. http://dx.doi.org/10.23960/jtep-l.v9i3.248-256
Natsir, M., Rendra, D.B., & Anggara, A.D.Y. (2019). Implementasi IoT untuk sistem kendali AC otomatis pada ruang kelas di Universitas Serang Raya. PROSISKO: Jurnal Pengembangan Riset dan Observasi Sistem Komputer, 6(1), 69–72.
Paski, J.A.I., Faski, G.I.S.L., Handoyo, M.F., & Pertiwi, D.A.S. (2017). Analisis neraca air lahan untuk tanaman padi dan jagung di Kota Bengkulu. Jurnal Ilmu Lingkungan, 15(2), 83–89. https://doi.org/10.14710/jil.15.2.83-89
Puspitorini, P., Serdani, A.D., Endrawati, T., Kunharjanti, A.W., Purwatiningsih, R., Istiqomah, I., Megasari, D., Wafa, A., & Khoiri, S. (2024). Perlindungan Tanaman. Lakeisha, Klaten.
Rosianty, Y., Lensari, D., & Handayani, P. (2018). Pengaruh sebaran vegetasi terhadap suhu dan kelembaban pada taman wisata alam (TWA) Punti Kayu Kota Palembang. Sylva: Jurnal Penelitian Ilmu-Ilmu Kehutanan, 7(2), 68-77. https://doi.org/10.32502/sylva.v7i2.1543
Rusmawan, D., Ahmadi, & Muzammil. (2018). Pengaruh kesediaan air terhadap produksi padi sawah. Balai Pengkajian Teknologi Pertanian Kepulauan Bangka Belitung: Seminar Nasional Hari Air Sedunia, 1(1), 210–215.
Setiawati, D.A., Hakim, M.L., & Sukmawaty. (2020). Rancang bangun sistem pengendalian suhu ruang pengering hybrid tipe rak berputar berbasis mikrokontroler Arduino Mega. Jurnal Teknik Pertanian Lampung, 9(1), 1–9. http://dx.doi.org/10.23960/jtep-l.v9i1.1-9
Srivastava, D., Kesarwani, A., & Dubey, S. (2018). Measurement of temperature and humidity by using Arduino tool and DHT11. International Research Journal of Engineering and Technology (IRJET), 5(12), 876–878.
Wahono, S., Sugiyanto, & Yohana, E. (2014). Eksperimen pengaturan suhu dan kelembaban pada rumah tanaman (greenhouse) dengan sistem humidifikasi. Jurnal Teknik Mesin, 2(1), 49–56.
Youda, S., & Juli, S. (2022). Rancang bangun kontrol kecepatan cairan infus berbasis Arduino Uno. Jurnal Ranah Research, 5(1), 23-32. https://doi.org/10.38035/rrj.v5i1.576

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


