Design of Temperature and Humidity Monitoring System for Duck Coop based on Internet of Things
DOI:
https://doi.org/10.24843/j.beta.2025.v13.i01.p08Keywords:
Duck, Internet of Things, DHT11 Sensor`Abstract
The main challenge in duck farming is maintaining the environmental conditions of the cage, especially
temperature and humidity to remain optimal. The purpose of designing a duck cage temperature and
humidity monitoring system based on the Internet of Things. The Design Stages consist of Functional
Design and Structural Design and Performance Test of the Internet of Things-based temperature and
humidity monitoring system. The heating lamp works according to the design, turning on if the temperature
is less than 27°C and humidity is more than 80% and turning off if the temperature is more than 30°C and
humidity is less than 60%. This maintains ideal temperature and humidity conditions for duck livestock. In
the DHT11 sensor test on temperature measurement, there was an error difference of 0.43 and an error
percentage of 1.65%, while in humidity measurement there was an error difference of 0.44 and an error
percentage of 0.53%. So it can be concluded that the system is quite accurate in measurements and can be
used to monitor the temperature and humidity of the duck house in real-time.
References
Arifin, J., Dewanti, I. E., & Kurnianto, D. (2017). Prototipe pendingin perangkat telekomunikasi sumber arus dc menggunakan smartphone. Media Elektrika, 10(1).
Detaviani, A. (2020). Perancangan Integrated Device Internet of Things Sebagai Monitoring Pembibitan Bebek (Doctoral dissertation, Universitas Muhammadiyah Ponorogo).
Efendi, M. Y. (2019). Implementasi Internet of Things Pada Sistem Kendali Lampu Rumah Menggunakan Telegram Messenger Bot Dan Nodemcu Esp 8266 (Doctoral dissertation, Prodi Teknik Informatika).
Khobariah, N. F., Hermawan, P. D. S., & Kusumadiarti, R. S. (2022). Sistem Monitoring Suhu dan Kelembapan Ruang Server Berbasis Wemos D1. JIPI (Jurnal Ilmiah Penelitian dan Pembelajaran Informatika), 7(1), 32-42.
Lembong, J. F., Santa, N. M., Makalew, A., & Elly, F. H. (2015). Analisis break even point usaha ternak itik pedaging (studi kasus pada usaha itik milik kelompok masawang di desa talikuran kecamatan remboken). ZOOTEC, 35(1), 39-45.
Lingga, R., Adibrata, S., Putri, S. G., Sari, A. D., & Jeniver, J. (2023). Performa Bebek Petelur yang Dibudidayakan pada Skala Rumah Tangga di Pekarangan Rumah yang Diberi Pakan Berprobiotik. Jurnal Peternakan, 20(2), 65-71.
Muta’affif, M. F., Mujtahid, M., El Bari, B., Evita, M., & Djamal, M. (2017). Sistem Kendali Peternakan Jarak Jauh Berbasis Internet of Things (IoT). Pros. SKF, 2017, 98-102.
Ummi, F. N. (2023). Prototype Monitoring Suhu Dan Kelembapan Penetasan Telur Bebbasis Internet Of Things (Doctoral dissertation, Universitas Siliwangi).
Polana, D. A. (2018). Beternak Itik Petelur; Produktivitas Hingga 95%. AgroMedia
Cahyono, P. W (2021). Perancangan Sistem Automasi Kandang Bebek Pintar Berbasis IoT (Internet of Things) (Doctoral dissertation, Universitas Balikpapan).
Salam, F., & Alexander, O. (2023). Perancangan Monitoring Suhu Berbasis Internet of Things Dengan Node Mcu Esp8266, Dht 11 Dan Thingspeak. Jurnal Ilmiah Informatika, 11(01), 22-26.
Santoso, R. A., Syauqy, D., & Ichsan, M. H. H. (2018). Pengembangan Sistem Prediksi Hama Wereng Berdasarkan Data Cuaca Sensor Dan Cuaca Online Menggunakan Metode Naive Bayes. Jurnal Pengembangan Teknologi Informasi dan Ilmu Komputer, 2(10), 4002-4010.
Sriwati, S., Saripuddin, M., Fathurrahman, M., & Khaidir, M. (2023). Optimasi Pemeliharaan Pemantauan Suhu Kandang Doc Ayam Broiler Dengan Sensor Lm35 Dan Teknologi Komunikasi Bluetooth. ILTEK: Jurnal Teknologi, 18(02), 108-111.
Wiranto, A., & Nurwarsito, H. (2022). Sistem Monitoring Pengatur Suhu dan Kelembaban pada Kandang Jangkrik berbasis Internet of Things (Studi Kasus Budidaya Jangkrik
Downloads
Published
How to Cite
Issue
Section
License

This work is licensed under a Creative Commons Attribution 4.0 International License.
License Term
All articles published in Jurnal Beta (Biosistem dan Teknik Pertanian) are open access and licensed under the Creative Commons Attribution 4.0 International License (CC BY 4.0). This means that anyone is free to:
-
Share — copy and redistribute the material in any medium or format.
-
Adapt — remix, transform, and build upon the material for any purpose, even commercially.
However, this is granted under the following conditions:
-
Attribution — You must give appropriate credit, provide a link to the license, and indicate if changes were made. You may do so in any reasonable manner, but not in any way that suggests the licensor endorses you or your use.
-
No additional restrictions — You may not apply legal terms or technological measures that legally restrict others from doing anything the license permits.
By submitting an article to Jurnal Beta (Biosistem dan Teknik Pertanian), authors agree to the publication of their work under this open access license. The authors retain the copyright of their work, but grant Jurnal Beta (Biosistem dan Teknik Pertanian) the right of first publication.
For more information about the CC BY 4.0 license, please visit the official website: https://creativecommons.org/licenses/by/4.0/