Design and Development of an Automatic Chicken Coop Temperature Stabilization System Based on the Internet of Things (IoT)

Authors

  • Mohamad Billah Septianto Universitas Nusantara PGRI Kediri
  • M.Dewi Manikta Puspitasari Universitas Nusantara PGRI Kediri
  • Miftakhul Maulidina Universitas Nusantara PGRI Kediri
  • Risky Aswi Ramadhani Universitas Nusantara PGRI Kediri

DOI:

https://doi.org/10.29407/noe.v9i01.26708

Keywords:

instrument air compressor

Abstract

This research aims to design and develop an automatic temperature control system for broiler chicken coops based on the Internet of Things (IoT). The system uses an ESP32 microcontroller and DHT22 temperature sensor to monitor the temperature of chickens aged 15–30 days. When the temperature exceeds 30°C, a cooling fan is automatically activated and deactivated when the temperature returns to normal. Temperature data is displayed via an LCD and sent to the Blynk app in real-time for remote monitoring. Tests conducted over seven days showed that the system successfully maintained coop temperatures within the ideal range of 29°C–30°C. Paired t-test results showed t<sub>count</sub> = 2.365 > t<sub>table</sub> = 2.04, indicating a significant difference in temperature before and after using the device. Interviews with partner farmers revealed that the system is easy to use, energy efficient, and effective in maintaining chicken comfort. This system is expected to be an efficient solution for farmers in maintaining optimal coop temperature automatically and reliably.

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References

DAFTAR PUSTAKA

Hadyanto, et al. (2022). Sistem Monitoring Suhu Dan Kelembaban Pada Kandang Anak Ayam Broiler Berbasis Internet Of Things. Jurnal teknologi dan sistem tertanam, 03.

Hanggara, g. S., irawan, r. H., indrawati, e. M., & prasetyo, a. B. (2022). Peningkatan Resiliensi Peternak Pasca Pandemi Covid-19 Menuju Kemandirian Peternakan. 1199–1205.

Kiram, s., & alfarezy, f. (2023). Penstabil Suhu Dan Kelembapan Pada Kandang Ayam Menggunakan Nodemcu. 1(1), 20–27.

Martins, d. S., studi, p., informatika, t., & timur, n. T. (2023). Pengendalian Lampu Berbasis Iot Menggunakan Nodemcu Dan Sensor Cahaya. 14, 38–47.

Mukti, y. I., rahmadayanti, f., & utami, d. T. (2021). Smart Monitoring Berbasis Internet Of Things ( Iot ) Suhu Dan Kelembaban Pada Kandang Ayam Broiler. 5(1), 77–84.

Prafanto, a., budiman, e., widagdo, p. P., putra, g. M., mulawarman, u., kehadiran, p., energy, b. L., address, b. D., signal, r., & indicator, s. (2021). Pendeteksi Kehadiran Menggunakan Esp32 Untuk Sistem Pengunci. 7, 37–43.

Ramadhani, s., & putra, d. E. (2025). Suci ramadhani1, ikhsan2*, dian eka putra3. 3(1), 1–6. Pengontrolan Suhu Otomatis pada Kandang Ayam Broiler Achdy Muhadis Berbasis Internet Of Things dan Bot Telegram

Sriwati1,saripuddin,fathurrahman, khaidir et all. (2023). Optimasi Pemeliharaan Pemantauan Suhu Kandang Doc Ayam Broiler Dengan Sensor Lm35 Dan Teknologi Komunikasi Bluetooth. 18(c), 108–111.

Surbakti, h. B., gusti, j., ginting, a., romadhona, s., & ginting, m. B. (2024). Sistem Monitoring Kualitas Udara Ruangan Dengan. 1, 129–137. Https://doi.org/10.61124/sinta.v1i3.25

Suryanto, s., & nur ariefin, r. (2023). Sistem Monitoring Kualitas Udara , Suhu Dan Kebersihan Kandang Ayam Otomatis Berbasis Internet Of Things (Iot). Imtechno: journal of industrial management and technology, 4(2), 117–123. Https://doi.org/10.31294/imtechno.v4i2.2150

Tobing, y. R. L. (2024). Rancang Bangun Otomatisasi Penjemuran Ikan Asin Berbasis Arduino Uno Menggunakan Energi Listrik Alternatif Fotovoltaik.

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Published

2026-04-29

How to Cite

Design and Development of an Automatic Chicken Coop Temperature Stabilization System Based on the Internet of Things (IoT). (2026). Nusantara of Engineering (NOE), 9(01), 266-272. https://doi.org/10.29407/noe.v9i01.26708

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