Sistem Kendali dan Pemantauan Inkubator pada Telur Bebek Berbasis Internet of Things (IoT)
Abstract
The process of hatching duck eggs still uses manual methods, namely by incubating the brood directly or incubating other birds. Over time, farmers began to use hatching machines (incubators) to hatch duck eggs. The use of incubators still controls and monitors manually, namely checking the temperature and humidity of the incubator is still done by the breeder periodically and reversing the position of the eggs is still done one by one by hand. This research aims to build a system that can control and monitor duck egg hatching using incubators automatically and manually based on the Internet of Things using DHT22 sensors, ultrasonic sensors and PIR sensors. The effect of the implementation of the incubator control and monitoring system on duck egg hatching, which can maintain the egg hatching environment in the incubator based on ideal parameters without having to be monitored directly by the breeder. The system can be controlled automatically and manually through the website and successfully hatch 10 fertile eggs within 29 to 30 days. The condition of the hatched ducklings is also healthy, no defects. DHT22 sensor readings in testing the entire system get good results with an average error value of 0.87% for temperature and 3.91% for humidity. The DHT22 sensor reading value ensures that the temperature and humidity in the incubator are maintained by controlling the on and off of two lights and two fans. Furthermore, the ultrasonic sensor readings in the overall system test also obtained good results with an average sensor error value of 0.19%. The distance of water in the container can be maintained because the system can control the on and off of the water pump. Then, the PIR sensor readings in the overall test successfully detected all movements of the duck eggs that hatched in the incubator so that the system can provide warnings in the form of buzzer sounds and pop-up notifications on the website.
Downloads
References
R. Fitriani dan T. Suryaningsih, “Upaya Warga dalam Meningkatkan Pendapatan Rumah Tangga Melalui Usaha Ternak Bebek Pedaging Dusun Jigang,” J. Creat. Student Res., vol. 1, no. 4, hal. 385–394, 2023, doi: https://doi.org/10.55606/jcsrpolitama.v1i4.2324.
F. Sugara, Karsid, dan B. Khoerun, “Mesin Penetas Telur Bebek Otomatis Berbasis Arduino Uno,” J. Rekayasa Energi, vol. 2, no. 1, hal. 50–56, 2023, doi: 10.31884/jre.v2i1.31.
M. R. Wirajaya, S. Abdussamad, dan I. Z. Nasibu, “Rancang Bangun Mesin Penetas Telur Otomatis Menggunakan Mikrokontroler Arduino Uno,” Jambura J. Electr. Electron. Eng., vol. 2, no. 1, hal. 24–29, 2020, doi: 10.37905/jjeee.v2i1.4579.
Y. Apriliansah, E. Kurniawan, dan R. I. Vidyastari, “View of Rancang Bangun Alat Deteksi Fertilitas Telur Unggas Berbasis Image Processing,” Digit. Transform. Technol., vol. 3, no. 1, hal. 270–278, 2023.
W. Arrofiq dan A. Samsudin, “Increasing The Productivity Of Duck Farmers Through The Provision Of Egg Incubator Machines With A Monitoring System In Nglebak Village, Bareng District, Jombang Regency,” J. Pelayanan Hub. Masy., vol. 1, no. 3, hal. 91–95, 2023.
Garno, Suparno, A. Jamaludin, A. Voutama, dan J. Indra, “Implementasi Teknologi alat Penetas dan Teropong Otomatis Untuk Meningkatkan Daya Tetas Telur Bebek di UKM Beki Kerawang,” vol. 5, hal. 3504–3513, 2022.
M. Iqbal dan O. Candra, “Rancang Bangun Alat Incubator Telur Otomatis Berbasis Internet Of Things (IOT) Menggunakan Wemos D1 R1,” JTEIN J. Tek. Elektro Indones., vol. 4, no. 2, hal. 665–674, 2023, doi: 10.24036/jtein.v4i2.434.
W. Wendanto, O. B. Prasetyo, D. R. Praweda, dan A. Rys Kusuma Arbi, “Alat Pengontrolan Suhu Penetas Telur Otomatis Menggunakan ESP8266 Wemos D1 Mini Berbasis Internet of Things,” Go Infotech J. Ilm. STMIK AUB, vol. 27, no. 2, hal. 167–176, 2021, doi: 10.36309/goi.v27i2.154.
K. A. Prasetia, Y. Sumaryana, dan A. Sudiarjo, “Sistem Monitoring Temperatur Pada Inkubator Penetas Telur Bebek Menggunakan Modul Nodemcu 8266 Yang Terintegrasi Dengan Aplikasi Blynk,” J. Inform. dan Tek. Elektro Terap., vol. 12, no. 2, hal. 1154–1162, 2024, doi: 10.23960/jitet.v12i2.4146.
H. Nirwana, M. F. Raharjo, F. Pangerang, Zein, dan Syahrir, “Monitoring Kinerja Mesin Tetas Otomatis Berbasis Internet of Things,” J. Teknol. Elekterika, vol. 19, no. 1, hal. 37–42, 2022, doi: 10.31963/elekterika.v6i1.3501.
M. Yasir, M. M, M. I. T. Ibrahim, dan M. Faisal, “Uji Kinerja Alat Penetas Telur Dengan Kapasitas 30 Butir Telur Bebek,” J. Ristech (Jurnal Riset, Sains dan Teknol., vol. 4, no. 1, hal. 39–44, 2023.
Hamdi, I. Ruslianto, dan Suhardi, “Sistem Pemantauan dan Pengontrolan pada Rumah Budi Daya Burung Walet Berbasis Internet of Things,” Komput. dan Apl., vol. 10, no. 2, hal. 320–331, 2022.
F. Puspasari, T. P. Satya, U. Y. Oktiawati, I. Fahrurrozi, dan H. Prisyanti, “Analisis Akurasi Sistem sensor DHT22 berbasis Arduino terhadap Thermohygrometer Standar,” J. Fis. dan Apl., vol. 16, no. 1, hal. 40–45, 2020, doi: 10.12962/j24604682.v16i1.5776.
Saharman, F. A. Setyaningsih, dan S. Suhardi, “Monitoring Dan Kontrol Pemberian Pakan Dan Minum Pada Peternakan Burung Puyuh Berbasis Internet of Things,” Coding J. Komput. dan Apl., vol. 10, no. 02, hal. 310–319, 2022, doi: 10.26418/coding.v10i02.55804.
Ruuhwan, R. Rizal, dan R. Kurniawan, “Pendeteksi Gerakan Menggunakan Sensor PIR untuk Sistem Keamanan di Ruang Kamar Berbasis SMS,” J. Inform. Univ. Pamulang, vol. 5, no. 3, hal. 281–287, 2020, doi: 10.32493/informatika.v5i3.5706.
S. Fuadi dan O. Candra, “Prototype Alat Penyiram Tanaman Otomatis dengan Sensor Kelembaban dan Suhu Berbasis Arduino,” JTEIN J. Tek. Elektro Indones., vol. 1, no. 1, hal. 21–25, 2020, doi: 10.24036/jtein.v1i1.12.
A. Pratama, S. Bahri, dan S. Suhardi, “Sistem Pemantauan Dan Pengontrolan Pada Tanaman Sawi Dan Ikan Nila Untuk Pola Cocok Tanam Akuaponik Berbasis Iot,” Coding J. Komput. dan Apl., vol. 10, no. 02, hal. 298, 2022, doi: 10.26418/coding.v10i02.55722.
F. Husnayain, D. S. Himawan, A. R. Utomo, I. M. Ardita, dan B. Sudiarto, “Analisis Perbandingan Kinerja Lampu LED, CFL, dan Pijar pada Sistem Penerangan Kantor,” Cyclotron, vol. 6, no. 01, hal. 78–83, 2023.
A. C. Lubis, H. Satria, M. F. Alayubby, R. M. Putri, dan C. R. Triana, “Efisiensi Perbandingan Teknologi Mesin Inkubator Penetas Telur Unggas Otomatis Menggunakan Synchronous Motor AC dengan Sistem Manual,” Semin. Nas. Penelit. LPPM UMJ, hal. 1–6, 2021.
M. I. Febryanto, “Pengaruh Variasi Jumlah Sudu Impeller Terhadap Kecepatan Aliran Air pada Pompa Arus DC Bertenaga Photovoltaic untuk sistem Water Heater Berskala Rumah Tangga,” Inst. Teknol. Nas. Malang, hal. 1–10, 2020.
H. Al Fani, Sumarno, Jalaluddin, D. Hartama, dan I. Gunawan, “Perancangan Alat Monitoring Pendeteksi Suara di Ruangan Bayi RS Vita Insani Berbasis Arduino Menggunakan Buzzer,” J. Media Inform. Budidarma, vol. 4, no. 1, hal. 144–149, 2020, doi: 10.30865/mib.v4i1.1750.
R. Fahrezi, R. R. Yuliendi, dan Yandri, “Prototype Alat Sensor Jarak Aman Parkir Mobil Menggunakan Sensor Ultrasonik Berbasis Arduino,” J. Inform. SIMANTIK, vol. 4, no. 1, hal. 44–51, 2023.
J. S. Saputra dan Siswanto, “Prototype Sistem Monitoring Suhu dan Kelembaban pada Kandang ayam Broiler Berbasis Internet of Things,” vol. 7, no. 1, hal. 72–83, 2020.
R. F. Purnomo, O. W. Purbo, dan R. A. Aziz, Firebase Membangun Aplikasi Berbasis Android. Yogyakarta: Penerbit ANDI, 2020.
A. H. Suryana, T. T, dan Suryaningrat, C++, PHP dan Java Pada Metode Numerik. Purbalingga: CV. Eureka Media Aksara, 2024.
Bila bermanfaat silahkan share artikel ini
Berikan Komentar Anda terhadap artikel Sistem Kendali dan Pemantauan Inkubator pada Telur Bebek Berbasis Internet of Things (IoT)
Pages: 705-713
Copyright (c) 2024 Nia Handayani, Tedy Rismawan, Irma Nirmala

This work is licensed under a Creative Commons Attribution 4.0 International License.
Authors who publish with this journal agree to the following terms:
- Authors retain copyright and grant the journal right of first publication with the work simultaneously licensed under Creative Commons Attribution 4.0 International License that allows others to share the work with an acknowledgment of the work's authorship and initial publication in this journal.
- Authors are able to enter into separate, additional contractual arrangements for the non-exclusive distribution of the journal's published version of the work (e.g., post it to an institutional repository or publish it in a book), with an acknowledgment of its initial publication in this journal.
- Authors are permitted and encouraged to post their work online (e.g., in institutional repositories or on their website) prior to and during the submission process, as it can lead to productive exchanges, as well as earlier and greater citation of published work (Refer to The Effect of Open Access).






















