ANALISIS KINERJA SENSOR DHT22 DAN SENSOR LM35 PADA SUHU RUANGAN SERVER

Arfan Haqiqi Sulasmoro (1), Yerry Febrian Sabanise (2), M. Teguh Prihandoyo (3)
(1) Politeknik Harapan Bersama, Indonesia,
(2) Politeknik Harapan Bersama, Indonesia,
(3) Politeknik Harapan Bersama, Indonesia

Abstract

A server room is a space for storing servers and network devices with certain security standards, including temperature regulation. Temperature is a crucial factor because of its influence on the performance of devices, especially electronic devices. Such influences include the performance of components, both semiconductors and capacitors, equipment life i.e. component wear, system reliability both physical and thermal and battery performance. So maintaining an optimal and stable temperature is very important to maintain the performance of electronic equipment. Performance analysis of DHT22 and LM35 sensors is needed to monitor the temperature and humidity of the server room, ensure optimal device performance, and reduce the risk of damage. The purpose of analyzing the performance of DHT22 and LM35 sensors is to compare the performance of the DHT22 sensor with LM35 for the temperature data obtained. The research method used is waterfall, which consists of the planning stage determining the block diagram for the design of the tool, the design of the microcontroller work flowchart to take the temperature with DHT22 and LM35, analyzing the data obtained, and implementation by installing the tool and taking data when running. The analysis results show that the DHT22 sensor is more accurate than the LM35 temperature sensor, where the DHT22 accuracy rate is 94.69% while the LM35 is 71.80%.

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References

Andriyanto, I., Dwiyatno, S., Komputer, S., Teknologi, F., Serang, U., Kota, R., Banten, S., Pendahuluan, I., & Masalah, A. L. B. (2015). Rancang Bangun Alat Ukur Temperatur Suhu Perangkat Server Menggunakan Sensor Lm35 Bebasis Sms Gateway. Jurnal PROSISKO, 2(1). https://core.ac.uk/download/pdf/327232669.pdf

Bahri, S., & Suhardiyanto. (2018). Sistem keamanan ruang server menggunakan teknologi RFID dan password. Jurnal Elektum, 15(1), 11–18.

Bent, D. E., & Wilson, S. (2022). Application of Low-Cost Sensors for Accurate Ambient Temperature Monitoring. Buildings, 12, 133–139.

Eka, P., & Susi, H. (2018). Rancang Bangun Sistem Monitoring Suhu Ruangan Bagian Pembukuan Berbasis WEB Menggunakan Mikrokontroler Arduino Uno R3. Jurnal Teknologi Informasi Dan Komunikasi, 11(1), 18–33.

Fachrun Nisa, & Nurul Chafid. (2022). Penerapan Internet of Things (Iot) Pada Sistem Monitoring Ruang Server di PT. Macrosentra Niaga Boga. Jurnal Satya Informatika, 6(01), 22–37. https://doi.org/10.59134/jsk.v6i01.36

Firmansyah, V. (2018). Aplikasi Kalman Filter Pada Pembacaan Sensor Suhu Untuk. Jurnal Material Dan Energi Indonesia, 08(September), 0–7. http://jurnal.unpad.ac.id/jmei/article/view/16624%0Ahttp://jurnal.unpad.ac.id/jmei/article/viewFile/16624/8349

Hashim, F., Mohamad, R., Kassim, M., Suliman, S. I., Anas, N. M., & Bakar, A. Z. A. (2019). Implementation of embedded real-time monitoring temperature and humidity system. Indonesian Journal of Electrical Engineering and Computer Science, 16(1), 184–190. https://doi.org/10.11591/ijeecs.v16.i1.pp184-190

Medojevic, M. (2017). Development and testing of Arduino-based Relative Humidity and Dry Bulb Temperature data logger. IS’17, 17, 20–25. http://www.iim.ftn.uns.ac.rs/is17

Mudofar Baehaqi, A. R. A. S. E. S. (2023). Performance Testing of DHT11 andDS18B20 Sensors as Server Room Temperature Sensors. Mestro: Jurnal Teknik Mesin Dan Elektro, 2(02), 6–11.

Muthmainnah, M., Aan Syaifudin, & Ninik Chamidah. (2023). Prototipe Alat monitoring Suhu dan Kelembaban pada Rumah Penyimpan Tembakau Berbasis Internet of Thing (IoT). Jurnal Pendidikan Mipa, 13(1), 177–182. https://doi.org/10.37630/jpm.v13i1.853

Nurcahya, M. E., Fianti, & Yulianti, I. (2021). Development of Air Temperature Measurement Using LM35 Sensor Based on Nodemcu Microcontroller and Internet of Things (IoT). Physics Communication, 5(1), 18–22. http://journal.unnes.ac.id/nju/index.php/pc

Prasetyadana, F. E. (2020). Implementasi Internet Of Things (IoT) pada Budidaya Jamur Tiram (Studi Kasus Rumah Jamur Barokah Jember). Skripsi.

Prastyio, M. A., Triyanto, D., & Rismawan, T. (2021). Purwarupa Sistem Monitoring dan Kendali Pada Ruang Server Dengan Teknologi Wireless Sensor Network Berbasis Website (Studi Kasus Gedung Upt.Tik Untan). Jurnal Komputer Dan Aplikasi, 09(02), 261–271.

Puspasari, F., Satya, T. P., Oktiawati, U. Y., Fahrurrozi, I., & Prisyanti, H. (2020). Analisis Akurasi Sistem sensor DHT22 berbasis Arduino terhadap Thermohygrometer Standar. Jurnal Fisika Dan Aplikasinya, 16(1), 40. https://doi.org/10.12962/j24604682.v16i1.5776

Ramdan, D., Hendrawan, H. A., & Ritzkal, R. (2018). Smart Room Ruang Server. Seminar Nasional Teknologi Informasi Universitas Ibn Khaldun Bogor 2018, 167–176.

Rustami, E., Fitria Adiati, R., Zuhri, M., & Arif Setiawan, A. (2022). Uji Karakteristik Sensor Suhu dan Kelembaban Multi-Channel Menggunakan Platform Internet of Things (IoT). Berkala Fisika, 25(2), 45–52.

Authors

Arfan Haqiqi Sulasmoro
arfan.hqq@poltektegal.ac.id (Primary Contact)
Yerry Febrian Sabanise
M. Teguh Prihandoyo
Sulasmoro, A. H., Yerry Febrian Sabanise, & M. Teguh Prihandoyo. (2024). ANALISIS KINERJA SENSOR DHT22 DAN SENSOR LM35 PADA SUHU RUANGAN SERVER. MUST: Journal of Mathematics Education, Science and Technology, 9(2). https://doi.org/10.30651/must.v9i2.23646

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