Pemberdayaan Ekonomi dan Ketahanan Pangan Masyarakat Bulupitu melalui Inovasi Smart Eco-Incubator Economic Empowerment and Food Security of the Bulupitu Community through Smart Eco-Incubator Innovation
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Abstract
Dependence on natural incubation methods continues to limit the productivity of chicken farming enterprises and efforts to strengthen food security in Bulupitu Village. This community service program aims to empower the local economy and improve community food security through the implementation of the Smart Eco-Incubator innovation to support sustainable chicken farming. This technology was designed with an automatic temperature and humidity control system, an energy-efficient Positive Temperature Coefficient (PTC) heating element, natural thermal insulation materials, and a passive ventilation system. The program implementation included the application of appropriate technology, field trials, and assistance in developing business models and digital marketing. The implementation results showed that the Smart Eco-Incubator increased the egg-hatching success rate to 80–90%, which was higher than the 50–60% achieved through natural incubation methods. The stable microclimate inside the incubator also accelerated the production cycle of high-quality poultry chicks without imposing an excessive electricity cost burden on the community. Post-implementation assistance through the development of independent business models and digital marketing strategies also expanded the market reach of community livestock products. Thus, the integration of environmentally friendly egg-incubation technology and modern business management can increase farmers’ productivity, promote business independence, and strengthen the local economic chain and food security in Bulupitu Village.
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References
Aldair, A. A., Rashid, A. T., & Mokayef, M. (2018). Design and implementation of intelligent control system for egg incubator based on IoT technology. In 2018 4th International Conference on Electrical, Electronics and System Engineering (ICEESE) (pp. 49–54). IEEE. https://doi.org/10.1109/ICEESE.2018.8703539
Alqoud, A., Schaefer, D., & Milisavljevic-Syed, J. (2022). Industry 4.0: Challenges and opportunities of digitalisation manufacturing systems. Advances in Transdisciplinary Engineering, 25, 25–30. https://doi.org/10.3233/ATDE220560
Ardiansyah, F., Lawasi, M. F., & Hadi, C. F. (2019). Sistem Monitoring Inkubator Penetas Telur Berbasis Android. Journal Zetroem, 1(2), 8–16. https://doi.org/10.36526/ztr.v1i2.596
Arifa, Y., Humaidah, N., Widodo, F., Muizzhuddin, M., & Pranoto, B. (2021). Application of smart oven technology as an effort to increase smoked egg production and quality in Sania MSME. Journal of Community Practice and Social Welfare, 1(2), 16–27. https://doi.org/10.33479/jacips.2021.1.2.16-27
Azahar, K. B., Sekudan, E. E., & Azhar, A. M. (2020). Intelligent egg incubator. International Journal of Recent Technology and Applied Science, 2(2), 91–102. https://doi.org/10.36079/lamintang.ijortas-0202.129
Bag, S., Sahu, A. K., Kilbourn, P., Pisa, N., Dhamija, P., & Sahu, A. K. (2022). Modeling barriers of digital manufacturing in a circular economy for enhancing sustainability. International Journal of Productivity and Performance Management, 71(3), 833–869. https://doi.org/10.1108/IJPPM-12-2020-0637
Boleli, I. C., Morita, V. S., Matos, J. B., Jr., Thimotheo, M., & Almeida, V. R. (2016). Poultry egg incubation: Integrating and optimizing production efficiency. Revista Brasileira de Ciência Avícola, 18(Special Issue 2), 1–16. https://doi.org/10.1590/1806-9061-2016-0292
Buana Lubis, A. C., Satria, H., Alayubby, M. F., Putri, R. M., & Triana, C. R. (2021). Efisiensi Perbandingan Teknologi Mesin Inkubator Penetas Telur Unggas Otomatis Menggunakan Synchronous Motor AC dengan Sistem Manual. Seminar Nasional Penelitian LPPM UMJ. https://jurnal.umj.ac.id/index.php/semnaslit/article/view/10984
Firmansyah, F., & Hartono, D. (2023). Digitalization and productivity: Evidence on Indonesian large and medium industries. International Journal of Current Science Research and Review, 6(1), 715–724. https://doi.org/10.47191/ijcsrr/v6-i1-78
Hendrawan, S. A., Chatra, A., Iman, N., Hidayatullah, S., & Suprayitno, D. (2024). Digital transformation in MSMEs: Challenges and opportunities in technology management. Jurnal Informasi dan Teknologi, 6(2), 141–149. https://doi.org/10.60083/jidt.v6i2.551
Islamiyah, M., & Arifin, S. (2023). Control Sistem Inkubator Telur Ayam Menggunakan Metode Fuzzy Logic. POSITIF: Jurnal Sistem dan Teknologi Informasi, 9(2), 123–129. https://doi.org/10.31961/positif.v9i2.2037
Ismawati, D., Syauqy, D., & Prasetio, B. H. (2017). Perbandingan Jumlah Membership dan Model Fuzzy terhadap Perubahan Suhu pada Inkubator Penetas Telur. Jurnal Pengembangan Teknologi Informasi dan Ilmu Komputer, 1(6), 476–485. https://j-ptiik.ub.ac.id/index.php/j-ptiik/article/view/139
Jabbar, F. A., BudimanKusdinar, A., & Prajoko. (2024). Prototype Sistem Pemantau Suhu pada Inkubator Telur Itik Berbasis IoT. JATI (Jurnal Mahasiswa Teknik Informatika), 8(5), 10410–10415. https://doi.org/10.36040/jati.v8i5.11049
Mariani, Y., Made, N., Kartika, A., & Hamzani, M. A. (2021). Pengaruh Suhu Penetasan terhadap Fertilitas, Mortalitas dan Daya Tetas Telur Ayam Kampung (Gallus domesticus) pada Inkubator. Jurnal Agribisnis dan Peternakan, 1(1), 23–28.
Maroma, A. N., Maroma, D. P., & Pangilinan, B. A. (2023). Development of automated egg incubator with backup power supply. ASEAN Journal of Community Engagement, 7(2), 151–164. https://doi.org/10.7454/ajce.v7i2.1222
Muttaqin, K., Ihsan, A., & Irawan, H. (2022). Peningkatan Produktivitas Ternak Ayam melalui Teknologi Inkubator Mesin Penetas Telur Berbasis Internet of Things. JMM (Jurnal Masyarakat Mandiri), 6(5), 4395–4408. https://doi.org/10.31764/jmm.v6i5.10812
Niranjan, L., Venkatesan, C., Suhas, A. R., Satheeskumaran, S., & Nawaz, S. A. (2021). Design and implementation of chicken egg incubator for hatching using IoT. International Journal of Computational Science and Engineering, 24(4), 363–372. https://doi.org/10.1504/IJCSE.2021.117018
Noviansyah, Y., & Abdulrahman, E. (2022). Rancang Bangun Inkubator Penetas Telur Otomatis Menggunakan Sensor Suhu Berbasis Mikrokontroler Wemos D1 ESP8266. Jurnal Teknik Elektro Raflesia, 2(1), 21–29. http://ejournal.polraf.ac.id/index.php/JTERAF/article/view/135
Novianto, D., Setiyowati, I., & Nugraha, W. T. (2019). Rancang Bangun Inkubator Telur Ayam Menggunakan DHT11 sebagai Sensor Suhu dan Kelembaban. Seminar Nasional Pengelolaan Sumber Daya Alam Berkesinambungan di Kawasan Gunung Berapi, 3–6. https://jurnal.untidar.ac.id/index.php/lppmpmp/article/view/1882
Nurmalasari, R., Puspitasari, P., Sunaryo, N. A., Ramadhani, V. M., Amanda, T. E., & Viona, G. P. P. S. (2023). Non-electrical water pump technology for fulfillment water supply in Gondanglegi Malang. International Journal of Multicultural and Multireligious Understanding, 10(6), 111–116. https://doi.org/10.18415/ijmmu.v10i6.4846
Nurmalasari, R., Sunaryo, N. A., Ramadhani, V. M., Viona, G. P. P. S., & Martiningtyas, A. J. S. (2023). Teknologi Penggiling Kotoran Hewan untuk Optimasi Pengolahan Limbah Ternak di Desa Bulupitu Kabupaten Malang. Prosiding Seminar Nasional UNARS, 2(1), 101–106. https://unars.ac.id/ojs/index.php/prosidingSDGs/article/view/3368
Nusyirwan, D., Fahrudin, M., & Perdana, P. P. P. (2019). Perancangan Purwarupa Pengatur Suhu Otomatis pada Inkubator Penetasan Telur Ayam Menggunakan Arduino Uno dan Sensor Suhu IC LM35. JAST: Jurnal Aplikasi Sains dan Teknologi, 3(1), 60–72. https://doi.org/10.33366/jast.v3i1.1315
Okpagu, P. E., & Nwosu, A. W. (2016). Development and temperature control of smart egg incubator system for various types of egg. European Journal of Engineering and Technology, 4(2), 13–21. https://www.idpublications.org/ejet-vol-4-no-2-2016/
Prabowo, M. C. A., Sayekti, I., Astuti, S., Nursaputro, S. T., & Supriyati. (2024). Development of an IoT-based egg incubator with PID control system and mobile application. International Journal on Informatics Visualization, 8(1), 465–472. https://doi.org/10.62527/joiv.8.1.2044
Prasetia, K. A., Sumaryana, Y., & Sudiarjo, A. (2024). Sistem Monitoring Temperatur pada Inkubator Penetas Telur Bebek Menggunakan Modul NodeMCU 8266 yang Terintegrasi dengan Aplikasi Blynk. Jurnal Informatika dan Teknik Elektro Terapan, 12(2), 1154–1162. https://doi.org/10.23960/jitet.v12i2.4146
Prasetyo, A., Ratsanjani, M. H., & Sabana, S. P. (2022). Penerapan Arsitektur IoT pada Inkubator Telur Puyuh Menggunakan Algoritma Fuzzy. Jurnal Informatika Polinema, 8(3), 45–52. https://doi.org/10.33795/jip.v8i3.859
Rasheed, A., San, O., & Kvamsdal, T. (2020). Digital twin: Values, challenges and enablers from a modeling perspective. IEEE Access, 8, 21980–22012. https://doi.org/10.1109/ACCESS.2020.2970143
Saryani, Handayani, I., & Agustina, R. (2022). Starting a digital business: Being a millennial entrepreneur innovating. Startupreneur Business Digital (SABDA Journal), 1(2), 126–133. https://doi.org/10.34306/sabda.v1i2.113
Shafiudin, S., & Kholis, N. (2017). Sistem Monitoring dan Pengontrolan Temperatur pada Inkubator Penetas Telur Berbasis PID. Jurnal Teknik Elektro, 6(3), 175–184. https://ejournal.unesa.ac.id/index.php/jurnal-teknik-elektro/article/view/19932
Sriwana, I. K., El Hadi, R. M., Pulungan, M. A., & Budinam, F. (2023). Rekayasa Teknologi Mesin Perah Susu Sapi Multifungsi Siap Minum Langsung. Prosiding Konferensi Nasional Pengabdian kepada Masyarakat dan Corporate Social Responsibility, 6, 1–5. https://doi.org/10.37695/pkmcsr.v6i0.2171
Yuda, U. W., & Sutabri, T. (2025). Pengembangan Inkubator Telur Ayam Berbasis IoT dan Arduino dengan Metode Prototipe Sistem Kontrol Suhu. Jurnal Sains Student Research, 3(2), 401–409. https://doi.org/10.61722/jssr.v3i2.4321






















