Design of Monitoring and Control System For Air Temperature And Humidity In Oyster Mushroom Cultivation Room Based on IOT

Авторы

  • Raffa Aulia Mutaqi Politeknik Negeri Padang Автор
  • Milda Yuliza Politeknik Negeri Padang Автор
  • Yul Antonisfia Politeknik Negeri Padang Автор
  • Nisa Rahima Sakinah Nisa Politeknik Negeri Padang Автор

DOI:

https://doi.org/10.62671/jowim.v2i1.59

Ключевые слова:

DHT 22 , Oyster Mushroom, IOT

Аннотация

Oyster mushroom cultivation is very popular among rural and urban communities, both on a small, medium and industrial scale. Oyster mushroom cultivation requires controlling the temperature and humidity in the mushroom barn to get optimal mushroom body growth. In general, the optimal temperature for oyster mushroom growth in the fruiting phase is 26-30°C with a humidity of 70-95%RH. This system describes the workings of the device used to monitor temperature and humidity using a DHT22 sensor through a microcontroller, which is displayed on the Blynk application and a 20x4 LCD. Measurements in lowland areas show a temperature of 29°C and humidity of 95%. The percentage error of the temperature measurement with the DHT22 sensor is 6.37%, with an average error of 1.60%. As for humidity, the measurement error is 0.71% with an average error of 0.82%. With this system, mushroom farmers can monitor the environmental conditions of the cultivation room in real-time through an IoT platform connected to the sensor.

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Библиографические ссылки

[1] Fitriawan Dkk-Pengendalian Suu Dan Kelembaban.

Jurnal Jurusan Teknik Elektro, Fakultas Teknik, Universitas

Lampung- 2020

[2] Akhmad Wahyu Dani Vol. 13. No. 02, Mei 2022: 108-

114- Universitas Mercu Buana, Jakarta

[3] Hanalde Andre Jurnal Electron, Vol. 3, No.1, Mei

2022, Hal. 26-32 .- Departemen Teknik Elektro, Universitas

Andalas

[4] Yuli Wibowo, (2021)Implementasi Monitoring

Suhu Dan Kelembaban Pada Budidaya Jamur Tiram Dengan

Iot.

https://jurnal.fp.unila.ac.id/index.php/jtp/article/view/5127/

pdf.

[5] Setyawan, Antoni Eka, Prototype Pengatur Suhu Dan

Kelembaban Otomatis Pada Rumah Jamur Berbasis Pid

Controler, Tugas Akhir , 2017

[6] Chindra Saputra,’’ Penerapan Sistem Kontrol Suhu Dan

Monitoring Serta Kelembapan Pada Kumbung Jamur Tiram

Berbasis Iot Menggunakan Metode Fuzzy Logic Jurnal Sains

Dan Informatika Volume 8, Nomor 2, November 2022.

[7] Djarijah, Nm Dan A.S. Djarijah, (2001), Budidaya Jamur

Tiram Putih. Kanisius, Yogyakarta.

[8] Anonim. 1999. Tanaman Jamur Tiram Ala Lembang.

Trubus No. 352. Thn Xxx

[9] Titik Suryani- Pertumbuhan Dan Hasil Jamur Tiram

Putih Pada Beberapa Bahan Media Pembibi Muhammadiyah Surakarta, Bioeksperimen Volume 3 No.1,

(Maret 2017)

[10]http://cybex.pertanian.go.id/mobile/artikel/84757/beber

apa-faktor penyebab-kegagalan-budidaya-jamur-tiram-/

[11] Habibah Nurul Hidayah. Jurnal Al-Azhar Indonesia Seri

Sains Dan Teknologi, Vol. 4, No. 3, Maret 2018- Rancang

Bangun Alat Ukur Ph, Suhu Dan Kelembaban Pada Media

Tanam Jamur Tiram

[12] Matrix Keypad 4×4 Untuk Mikrokontroler Read More

At: https://elektronika-dasar.web.id/matrix-keypad4x4 untuk mikrokontroler/copyright © elektronika dasar

[13] J. Kurniawan, “Rancang Bangun Smartgrowin, Jamur Tiram Berdasarkan Kontrol Suhu Dan Kelembaban Berbasis Android,” Tugas Akhir Sarjana, 2019

[14]https://dispertan.bantenprov.go.id/lama/read/artikel/941/teknik-dan-cara-budidaya-jamur-tiram.html (2014)

Опубликован

2025-02-11

Как цитировать

[1]
R. Aulia Mutaqi, M. Yuliza, Y. Antonisfia, and N. R. S. Nisa, Trans., “Design of Monitoring and Control System For Air Temperature And Humidity In Oyster Mushroom Cultivation Room Based on IOT”, JOWIM, vol. 2, no. 1, pp. 9–14, Feb. 2025, doi: 10.62671/jowim.v2i1.59.

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