Perancangan Alat Monitoring Air Conditioner Menggunakan Mikrokontroler Wemos
DOI:
https://doi.org/10.61769/telematika.v0i0.229Keywords:
monitoring, mikrokontroler, sensor, penyimpanan dataAbstract
Comfort in the classroom becomes an important factor to support the lecturing process. One type of comfort that supports the lecture process is thermal comfort. Thermal conditions in the room is influenced by many factors, one of which is air conditioner. An air conditioner monitoring tool is required to maintain thermal comfort in the room. Monitoring tools are needed to measure some important parameters that affect the thermal conditions, such as temperature, humidity, air conditioner power status, human presence, and real time clock. Therefore, this problem solving activity aims to design a monitoring tool air conditioner using Wemos microcontroller. Measurement of temperature and humidity parameters using AM2302 module, air conditioner power status using KY-003 module, human presence using HC-SR501 module, and recorded real time clock using DS3231 module. Monitoring tools are designed to store internally with SD card modules and display sensor data through the Thingspeak portal. Air conditioner monitoring equipment is tested with various thermal conditions in the room. Test results are used to determine the performance of each module. The output that can be generated by the air conditioner monitoring tool is the monitoring data that can be used as feedback to improve the thermal comfort level in the room.
Kenyamanan dalam ruang kelas menjadi faktor yang cukup penting untuk mendukung proses perkuliahan. Salah satu jenis kenyamanan yang mendukung proses perkuliahan adalah kenyamanan termal. Kondisi termal dalam ruangan dipengaruhi oleh banyak faktor, salah satunya adalah air conditioner. Untuk menjaga kenyamanan termal dalam ruangan dibutuhkan sebuah alat monitoring air conditioner. Alat monitoring dibutuhkan untuk mengukur beberapa parameter penting yang mempengaruhi kondisi termal, diantaranya temperatur, kelembapan, status power air conditioner, keberadaan manusia, serta pencatat waktu real time. Maka dari itu, pemecahan masalah ini bertujuan untuk merancang sebuah alat monitoring air conditioner dengan menggunakan mikrokontroler Wemos. Pengukuran parameter temperatur dan kelembapan menggunakan modul AM2302, status power air conditioner dengan menggunakan modul KY-003, keberadaan manusia dengan menggunakan modul HC-SR501, dan mencatat waktu real time dengan menggunakan modul DS3231. Alat monitoring dirancang agar dapat menyimpan secara internal dengan modul SD card dan menampilkan data sensor melalui portal Thingspeak. Alat monitoring air conditioner diuji coba dengan berbagai kondisi termal ruangan. Hasil pengujian digunakan untuk mengetahui kinerja dari setiap modul yang digunakan untuk mengukur parameter yang ada. Melalui pemecahan masalah ini, output yang dapat dihasilkan oleh alat monitoring air conditioner adalah data hasil monitoring yang dapat digunakan sebagai feedback untuk mengetahui tingkat kenyamanan termal dalam ruangan.
References
Aienna, S. Adyatma and D. Arisanty, “Kenyamanan Termal Ruang Kelas di Sekolah Tingkat SMA Banjarmasin Timur,” Jurnal Pendidikan Geografi, pp. 1-12, 2016.
T. H. Karyono, “Penelitian Kenyamanan Termis di Jakarta Sebagai Acuan Suhu Nyaman Manusia Indonesia,” Dimensi Teknik Arsitektur, vol. 29, no. 1, pp. 24-33, 2001.
D. T. Istiningrum, L. Arumintia, M. Mukhlisin and M. T. Rochadi, “Kajian Kenyamanan Termal Ruang Kuliah Pada Gedung Sekolah C Lantai 2 Politeknik Negeri Semarang,” Wahana Teknik Sipil, vol. 22, no. 1, pp. 1-16, 2017.
A. Herliana and P. M. Rasyid, “Sistem Informasi Monitoring Pengembangan Software Pada Tahap Development Berbasis Web,” Jurnal Informatika, vol. III, no. 1, pp. 41-50, April 2016.
M. F. Wicaksono and Hidayat, Mudah Belajar Mikrokontroler Arduino Disertai 23 Proyek, termasuk Proyek Ethernet dan Wireless Client Server, Bandung: Informatika Bandung, 2017.
WEMOS Electronics, “D1 (An Arduino UNO Compatible wifi board based on ESP8266EX),” 10 March 2017. [Online]. Available: https://wiki.wemos.cc/products:d1:d1.
Y. A. Kurnia Utama, “Perbandingan Kualitas Antar Sensor Suhu dengan Menggunakan Arduino Pro Mini,” e-Jurnal NARODROID, vol. 2, no. 2, pp. 145-150, 2016.
D. Nedelkovski, “Arduino and DS3231 Real Time Clock Tutorial,” [Online]Available: https://howtomechatronics.com/tutorials/arduino/arduino-ds3231-real-time-clock-tutorial/. [Accessed 10 July 2018].
H. Bench, “Arduino HC-SR501 Motion Sensor Tutorial,” 14 May 2018. [Online]. Available: http://henrysbench.capnfatz.com/henrys-bench/arduino-sensors-and-input/arduino-hc-sr501-motion-sensor-tutorial/.
Tkkrlab (Tukker-Lab), “Arduino KY-003 Hall magnetic sensor module,” 7 May 2016. [Online]. Available: https://tkkrlab.nl/wiki/Arduino_KY-003_Hall_magnetic_sensor_module.
vcc2gnd.com, “DHT22 (AM2302) Digital Capacitive Relative Humidity & Temperature Sensor Module,” 19 April 2014. [Online]. Available: http://blog.vcc2gnd.com/2014/04/dht22-am2302-digital-capacitive_19.html.
Arduino Modules, “KY-003 Hall Magnetic Sensor Module,” 10 May 2016. [Online]. Available: https://arduinomodules.info/ky-003-hall-magnetic-sensor-module/.
Indoware - Electronic Online Store, “Micro SD Card Modul SPI Antarmuka Mini card reader TF,” indo-ware, [Online]. Available: https://www.indo-ware.com/produk-2735-micro-sd-card-modul-spi-antarmuka-mini-card-reader-tf.html. [Accessed 10 July 2018].
A. F. Jaya, M. A. Murti and R. Mayasari, “Monitoring dan Kendali Perangkat Pada Ruang Kelas Berbasis Internet Of Things (IOT),” e-Proceeding of Engineering, pp. 22-31, 2018.
Suwardi, Monitoring Kecepatan Angin berbasis Web, Batam: Politeknik Negeri Batam, 2017.
R. L. Palimbunga, Sistem Monitoring Keasaman Air Berbasis Jaringan Nirkabel WIFI IP, Yogyakarta: Universitas Sanata Dharma, 2017.
Downloads
Published
Issue
Section
License
You are free to:
- Share — copy and redistribute the material in any medium or format for any purpose, even commercially.
- Adapt — remix, transform, and build upon the material for any purpose, even commercially.
- The licensor cannot revoke these freedoms as long as you follow the license terms.
Under the following terms:
- Attribution — You must give appropriate credit, provide a link to the license, and indicate if changes were made. You may do so in any reasonable manner, but not in any way that suggests the licensor endorses you or your use.
- ShareAlike — If you remix, transform, or build upon the material, you must distribute your contributions under the same license as the original.
- No additional restrictions — You may not apply legal terms or technological measures that legally restrict others from doing anything the license permits.
Notices:
You do not have to comply with the license for elements of the material in the public domain or where your use is permitted by an applicable exception or limitation.
No warranties are given. The license may not give you all of the permissions necessary for your intended use. For example, other rights such as publicity, privacy, or moral rights may limit how you use the material.