Smart System Kumbung Jamur Tiram dengan IoT dan Sensor DHT11-LDR
DOI:
https://doi.org/10.28918/logiclink.v2i2.12745Abstract
Oyster mushroom cultivation requires stable environmental conditions, particularly in terms of temperature, humidity, and lighting. Traditionally, the management of mushroom houses has been carried out manually, which often leads to inefficiency and production failures. This study aims to design and implement a Smart System for oyster mushroom houses based on the Internet of Things (IoT) using DHT11 and LDR sensors. The research employed the Research and Development (R&D) method with six main stages, namely needs analysis, planning, initial product development, limited trials, product revision, and product testing. The system was designed using NodeMCU as the main controller, with the DHT11 sensor to measure temperature and humidity, and the LDR sensor to detect light intensity. Data are displayed through an LCD and transmitted in real time to an Android application. The design validation test obtained a score of 30, categorized as “Good,” while the limited user trial involving 12 respondents achieved an average score of 35.16, categorized as “Very Good (Valid).” The system automatically activates the fan when the temperature exceeds 28°C, turns on the water pump when humidity is low, and switches on the lamp when light intensity is insufficient. Therefore, this system can assist mushroom farmers in maintaining optimal environmental conditions in real time and automatically, which is expected to improve both the quality and productivity of oyster mushroom cultivation.
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References
Chong, J. L., Chew, K. W., Peter, A. P., Ting, H. Y., & Show, P. L. (2023). Internet of Things (IoT)-Based Environmental Monitoring and Control System for Home-Based Mushroom Cultivation. Biosensors, 13(1), 98. https://doi.org/10.3390/bios13010098
Desmira, D. (2022). Aplikasi Sensor Ldr (Light Dependent Resistor) untuk Efisiensi Energi pada Lampu Penerangan Jalan Umum: Aplikasi Sensor Ldr (Light Dependent Resistor) untuk Efisiensi Energi Pada Lampu Penerangan Jalan Umum. PROSISKO: Jurnal Pengembangan Riset Dan Observasi Sistem Komputer, 9(1), 21–29. https://doi.org/10.30656/prosisko.v9i1.4465
Desnanjaya, I. G. M. N., & Sugiartawan, P. (2022). Controlling and Monitoring of Temperature and Humidity of Oyster Mushrooms in Tropical Climates. IJEIS (Indonesian Journal of Electronics and Instrumentation Systems), 12(1), 69–80. https://doi.org/10.22146/ijeis.73346
Dui, H., Zhang, S., Liu, M., Dong, X., & Bai, G. (2024). IoT-Enabled Real-Time Traffic Monitoring and Control Management for Intelligent Transportation Systems. IEEE Internet of Things Journal, 11(9), 15842–15854. https://doi.org/10.1109/JIOT.2024.3351908
Husnayayin, A., Gustina, Z., & Dewi, D. E. C. (2024). Karakteristik dan Langkah-Langkah Metode Penelitian Research and Development (Borg & Gall) dalam Pendidikan. Pendas : Jurnal Ilmiah Pendidikan Dasar, 9(04), 490–501. https://doi.org/10.23969/jp.v9i04.19906
Lahay, M., Ibrahim, R. A., Bahri, R. B. H., & Arif, M. (2023). Teori Pembelajaran Kognitif dan Penerapannya Pada Buku Ajar Al’arabiyah Linnasyi’in di Ma Al-Huda Kota Gorontalo. Assuthur: Jurnal Pendidikan Bahasa Arab, 2(2), 105–119. https://doi.org/10.58194/as.v2i2.1272
Ntihung, M. E. N., Sugiartawan, P., & Willdalia, A. (2024). Sistem Informasi Monitoring Kumbung Jamur Tiram Berbasis Internet of Things. IJEIS (Indonesian Journal of Electronics and Instrumentation Systems), 14(1), 105–116. https://doi.org/10.22146/ijeis.95513
Pawana, I. G. N. A., Gunawan, H., & Paramartha, A. (2021). Integrated Development Environment Untuk Pengembangan Smart System/ IoT Berbasis Chip ESP32. TIERS Information Technology Journal, 2(2), 16–23. https://doi.org/10.38043/tiers.v2i2.3313
Prastowo, I. A., Muhammad, N. F., & Farida, A. (2024). Perancangan Sensor Monitoring Suhu Dan Kelembaban Pada Kumbung Jamur Kuping Berbasis Iot. JOURNAL ZETROEM, 6(2), 6–10. https://doi.org/10.36526/ztr.v6i2.4003
Pratiwi, N. (2022). Desain Alat Hitung Berbasis Angka Braille, Cube’s Sebagai Alternatif Baru Dalam Pembelajaran Matematika untuk Anak Berkebutuhan Khusus (Tuna Netra). Journal Evaluation in Education (JEE), 3(1), 32–37. https://doi.org/10.37251/jee.v3i1.234
Rahman, S. A., Muddin, S., & Baco, S. (2024). Rancang Bangun Alat Monitoring Suhu Kendaraan Menggunakan Sensor DHT 11 Berbasis Internet of Things. Jurnal Ilmu Komputer Dan Teknologi Informasi, 1(2), 100–104. https://doi.org/10.71466/jiktif.v1i2.46
Sandikyawan, R. R., & Arifin, S. (2024). Monitoring System Indoor Mushroom Cultivation via Telegram Bot. Journal of Informatics Development, 2(2), 45–56. https://doi.org/10.30741/jid.v2i2.1348
Susetyo, Y. A., Parhusip, H. A., & Trihandaru, S. (2024). Herbs Go Digital: IoT Monitors Temperature and Humidity Automatically. CogITo Smart Journal, 10(2), 312–325. https://doi.org/10.31154/cogito.v10i2.621.312-325
Widhiantari, I. A., Widiastawan, I. K. W., & Prasistha, N. K. I. (2025). Monitoring of Air Temperature and Humidity Inside and Outside Oyster Mushroom (Pleurotus ostreatus) House Using DHT11 Sensor. Jurnal Online Pertanian Tropik, 12(1), 16–23. https://doi.org/10.32734/jpt.v12i2.19868
Yuangga, J. R., & Agustina, R. (2021). Rancang Bangun Sistem Monitoring Akademis Siswa Berbasis Android di SD Negeri 1 Tlogosari Kecamatan Tirtoyudo Kabupaten Malang. RAINSTEK: Jurnal Terapan Sains Dan Teknologi, 3(1), 34–41. https://doi.org/10.21067/jtst.v3i1.4160
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