PERANCANGAN SISTEM MONITORING PADA ALAT PENGATUR SUHU DAN KELEMBABAN KANDANG PUYUH BERBASIS INTERNET OF THINGS (IOT) (Studi Kasus : Peternakan Bang Ade)

Authors

  • Dicki Fernando Aurellianto Universitas Pamulang
  • Munawaroh Universitas Pamulang

Keywords:

Quail Farm, Arduino UNO, Internet of Things (IoT)

Abstract

The temperature and humidity control system is very helpful for breeders to maintain the temperature of the quail cage to remain stable in order to achieve success for breeders. Apart from that, the system can help both in terms of time efficiency and human labor because the system works automatically. The microcontroller will give instructions to turn off or turn on the humidity sensor where the sensor will read the room temperature of the quail cage then instruct Arduino to turn on the switch and turn on the light/fan which will automatically in the livestock cages that experience increased air humidity. The proposed method for developing a temperature and humidity monitoring system is the observation method. Data collection is carried out directly on the object of the problem in the ade maulana quail farm. The author made direct observations when the farm manager carried out mointoring on quails. Automatic control design and temperature monitoring of quail cages by utilizing Internet Of Things (IoT) technology using the Blynk application integrated with the NodeMCU ESP8266 module equipped with a DHT11 temperature sensor which functions as a temperature detector in the cage. In addition, this tool is equipped with a 16x2 LDC to display the results of temperature detection, as well as a relay that functions to control the fan and turn on the light bulb in the cage.

References

Ibrahim Rizki Dkk. “Sistem monitoring pengontrol suhu dan intensitas cahaya pada penetas telur puyuh”. Program Studi Teknik Informatika, STMIK Sinar Nusantara. 2018

Bashar Dkk. “Pemberian Tepung Jahe (Zingiber Officinale) dan Tepung Kunyit (Curcuma Domestica) Pada Pakan Komersial Terhadap Performa Puyuh (Coturnix Japonica) Periode Layer”. Program Studi Peternakan, Universitas Djuanda Bogor. 2017

Abidin, Z. “Meningkatkan Produktifitas Ayam Ras Pedaging” Agromedia Pustaka. Jakarta. 2003

Listiyowati, E dan K. Roospitasari. “Beternak Puyuh Secara Komersil” Penebar Swadaya. Jakarta. 2009

Wuryadi, Slamet “Buku pintar beternak dan bisnis puyuh”. Cetakan Pertama. Jakarta : PT Agro Media Pustaka. 2011

Budi Laksono, Arief. “Rancang Bangun Sistem Pemberi Pakan Ayam serta Monitoring Suhu dan Kelembaban Kandang Berbasis ATMega328”. Program studi Teknik Elektro, Universitas Islam Lamongan. 2017

Setio Budianto, Eko. Ramadiani & Harsa Kridalaksana, Awang. “Prototipe Sistem Kendali Pengaturan Suhu dan Kelembaban Kandang Ayam Broiler Berbasis Mikrokontroler ATMega328”. Universitas Mulawarman. 2017

Ardiyanto, & Nurfiana. “Sistem Kontrol Intesnsitas Cahaya Pada Kandang Puyuh Berbasis Arduino Uno”. Fakultas Ilmu Komputer Informatics & Business Institute Darmajaya. 2015.

Owen, O. J. dan U. A. Dike. 2013. Japanese Quail (Coturnix coturnix japonica) Husbandry: A Means of Increasing Animal Protein Base In Developing Countries. J. of Environ. Issues and Agric.E In Developing Countries. 5(1):1-4.

Radhitya, A. 2015. Pengaruh Pemberian Tingkat Protein Ransum pada Fase Grower terhadap Pertumbuhan Puyuh (Cortunix cortunix japonica). Students E-Journal. 4(2): 1- 11.

Setyawan, A.E., E. Sudjarwo, E. Widodo, dan H. Prayogi. 2012. Pengaruh Penambahan Limbah Teh dalam Pakan terhadap Penampilan Produksi Telur Burung Puyuh. Jurnal Ilmu-Ilmu Peternakan. 23:7-10.

Nugroho dan I.G.K.T. Mayun. 1986. Beternak Burung Puyuh. Eka Offsets, Semarang.

Progressio, W. 2003. Burung Puyuh. Http://Warintek. Progressio.Or.Id- By Rans. [2 Desember 2019].

Dewi, S. 2001. Beternak Burung Puyuh Tetap Menguntungkan. Pustaka Paru Press. Yogyakarta.

Pappas, J. 2002. “Coturnix japonica” (On-line), Animal Diversity Web. http://animaldiversity.ummz.edu/side/accounts/information/CoturnixJapon ica.hmtl. [21November2019]

Achmad, Heri, Defianti (Ed). 2011. Performa Produksi Burung Puyuh (Coturnixcoturnix japonica) Yang Diberi Pakan Dengan Suplementasi Omega-3. Fakultas pertanian. Institut Pertanian Bogor.

Arduino Home Page. “Arduino Uno”. 2012. Tersedia : http://www.arduino.cc/en/main.arduinoBoardUno [1 juli 2019]

Perguruan tinggi Raharja iMe. “Pengertian arduino uno”. Tersedia : https://ilearning.me/sample-page-162/arduino/pengertian-arduino-uno/ [1 Juli 2019]

ESP8266-01 Wifi Module. Tersedia : htpp://eckteinimg.de/Datasheet/Aithinker%20ESP-01%20EN.pdf [1 Juli 2019].

DS18B20. Tersedia : https://datasheets.maximintegrated.com/en/ds/DS18B20.pdf [ 2 Juli 2019]

Digital-output relative humidity & temperature sensor/module DHT22. Tersedia : https://www.sparkfun.com/datasheet/sensors/temperature/DHT22.pdf [2 Juli 2019]

Kushagra. “16x2 Character LCD”. Tersedia : https://www.engineersgarage.com/sites/default/files/LCD%2016x2.pdf [2 Juli 2019]

Kho, Dickson. “Pengertian relay dan fungsinya” Tersedia : Teknik Elektronika. https://teknikelektronika.com/pengertian-relay-fungsi-relay/ [3 Juli 2019]

S. Sukaridhoto. “Bermain dengan internet of things & big data”. Politeknik Elektronika Negeri Surabaya. 2016.

A. Solichin. “Pemrograman web dengan PHP dan MySQL”. Universitas Budi Luhur : Jakarta, 2016.

Nusyirwan, D. (2020). Penyaring Udara Berbasiskan Arduino Uno Sebagai Solusi Untuk Memperbaiki Kualitas Udara Di Dalam Ruangan Kelas Sdn 003 Binaan Tanjungpinang. Jurnal Teknik, 9(1). https://doi.org/10.31000/jt.v9i1.1658

Yuliana, K., & Azizah, N. (2019). Perancangan Rekapitulasi Pengiriman Barang Berbasis Web. 9(1).

Rizky, S. (2017). “Activity Diagram,” in Rekayasa Perangkat Lunak Terstruktur dan Berorientasi Objek. Jurnal Pilar Nusa Mandiri, 161–162.

Mardzotillah, Q., & Ridwan, M. (2020). Sistem Tracer Study Dan Persebaran Alumni Berbasis Web Di Universitas Islam Syekh-Yusuf Tangerang. Jutis (Jurnal Teknik Informatika), 8(1), 90–106.

Syamsiah, S. (2019). Perancangan Flowchart dan Pseudocode Pembelajaran Mengenal Angka dengan Animasi untuk Anak PAUD Rambutan. STRING (Satuan Tulisan Riset Dan Inovasi Teknologi), 4(1), 86. https://doi.org/10.30998/string.v4i1.3623

Hakiki, M. I., Darusalam, U., & Nathasia, N. D. (2020). Konfigurasi Arduino IDE Untuk Monitoring Pendeteksi Suhu dan Kelembapan Pada Ruang Data Center Menggunakan Sensor DHT11. Jurnal Media Informatika Budidarma, 4(1), 150. https://doi.org/10.30865/mib.v4i1.1876

Handoko, P. (2017). SISTEM KENDALI PERANGKAT ELEKTRONIKA MONOLITIK BERBASIS ARDUINO UNO R3. (November), 1–2.

Nova El Maidah, "Perancangan Perangkat Keras Pengendali Fuzzy," November 2012.

Quaility. “Kandang burung puyuh untuk ternak produktif (terbaik)”.Tersedia : https://quaility.com/kandang-burung-puyuh/ [1 juli 2019]

Budi, K. S., & Pramudya, Y. (2017). Pengembangan Sistem Akuisisi Data Kelembaban Dan Suhu Dengan Menggunakan Sensor Dht11 Dan Arduino Berbasis Iot. VI, SNF2017-CIP-47-SNF2017-CIP-54.

https://doi.org/10.21009/03.snf2017.02.cip.07

Additional Files

Published

05-11-2023

How to Cite

Dicki Fernando Aurellianto, & Munawaroh. (2023). PERANCANGAN SISTEM MONITORING PADA ALAT PENGATUR SUHU DAN KELEMBABAN KANDANG PUYUH BERBASIS INTERNET OF THINGS (IOT) (Studi Kasus : Peternakan Bang Ade). OKTAL : Jurnal Ilmu Komputer Dan Sains, 2(11), 3002–3011. Retrieved from https://journal.mediapublikasi.id/index.php/oktal/article/view/1869