Perancangan User Interface pada Sistem Smart Building Berbasis Internet of Things

Authors

  • A. Jagad Miftahul Rizqy Universitas Udayana
  • I Nyoman Satya Kumara Universitas Udayana
  • I Made Arsa Suyadnya Universitas Udayana
  • I Wayan Sukerayasa Universitas Udayana

DOI:

https://doi.org/10.55606/jurritek.v4i3.6819

Keywords:

Energy Efficiency, Internet of Things (IoT), Laravel, Monitoring and Control, NodeMCU ESP32, Smart Building

Abstract

The DH Building of the Electrical Engineering Study Program at Udayana University faces significant challenges in energy efficiency, as it still relies on conventional electrical systems. User negligence, such as forgetting to switch off lights and air conditioners (AC) after use, often results in unnecessary energy waste and increased operational costs. This issue highlights the urgent need for smart solutions capable of automating energy management, reducing waste caused by human error, and supporting the creation of a more efficient and sustainable campus environment. To address this problem, this study designs and implements a smart building system based on the Internet of Things (IoT). The system employs a NodeMCU ESP32 microcontroller as the main processing unit, integrated with a series of sensors including a DHT22 sensor for monitoring temperature and humidity, an MQ2 sensor for smoke detection, a PIR sensor for motion detection, and a PZEM-004T sensor for monitoring energy consumption. Control of electronic devices such as lights and AC units is carried out both automatically and manually through relay modules connected to the system. All sensor data and control functions are accessed via a web interface developed using the Laravel framework and a MySQL database. The testing results indicate that the designed system was successfully implemented and functions as expected. Sensor testing demonstrated high accuracy compared to standard measuring instruments, while the electronic device control system achieved an average response time of approximately 3.6 seconds, proving its reliability. Overall, the system provides a comprehensive solution for energy consumption monitoring and control, while also enhancing comfort and safety in the DH Building, in line with the goals of energy efficiency and facility modernization.

Downloads

Download data is not yet available.

References

Al Dakheel, J., Del Pero, C., Aste, N., & Leonforte, F. (2020). Smart buildings features and key performance indicators: A review. Sustainable Cities and Society, 61, 102328. https://doi.org/10.1016/j.scs.2020.102328

Andrianto, H., Susanthi, Y., & Jonathan, V. (2024). Platform sistem pemantauan penggunaan energi listrik berbasis IoT. Techné Jurnal Ilmiah Elektroteknika, 23(2), 199–212. https://doi.org/10.31358/techne.v23i2.422

Hakim. (2010). Evaluasi sistem bangunan pintar pada pusat perbelanjaan Senayan City di Jakarta. Arsitron, 1(2), 84.

Hendrawan, A. P. W., & Agustini, N. P. (2022). Simulasi kendali dan monitoring daya listrik peralatan rumah tangga berbasis ESP32. Alinier Jurnal, 3(1), 55–68. https://doi.org/10.36040/alinier.v3i1.4855

Inggi, R., & Pangala, J. (2021). Perancangan alat pendeteksi kebocoran gas LPG menggunakan sensor MQ-2 berbasis Arduino. SIMKOM, 6(1), 12–22. https://doi.org/10.51717/simkom.v6i1.51

Islam, H. I., Nabilah, N., Atsaurry, S. S., Saputra, D. H., Pradipta, G. M., Kurniawan, A., Syafutra, H., Irmansyah, I., & Irzaman, I. (2016). Sistem kendali suhu dan pemantauan kelembaban udara ruangan berbasis Arduino Uno dengan menggunakan sensor DHT22 dan Passive Infrared (PIR). Prosiding Seminar Nasional Fisika (E-Journal) SNF2016, SNF2016-CIP-119–SNF2016-CIP-124. https://doi.org/10.21009/0305020123

Juliansyah, A., & Nadiani, D. (2021). Sistem pendeteksi gerak menggunakan sensor PIR dan Raspberry Pi (Motion detection system using PIR sensors and Raspberry Pi). JTIM: Jurnal Teknologi Informasi dan Multimedia, 2(4), 199–205. https://doi.org/10.35746/jtim.v2i4.113

Najib, W., Sulistyo, S., & Kunci, K. (2020). Tinjauan ancaman dan solusi keamanan pada teknologi Internet of Things (Review on security threat and solution of Internet of Things technology). Jurnal Nasional Teknik Elektro dan Teknologi Informasi, 9(4), 375–384. https://doi.org/10.22146/jnteti.v9i4.539

Pratama, E. W., & Kiswantono, A. (2023). Electrical analysis using ESP-32 module in real-time. JEECS (Journal of Electrical Engineering and Computer Sciences), 7(2), 1273–1284. https://doi.org/10.54732/jeecs.v7i2.21

Puriyanto, R. D., & Aditya, R. P. (2021). Pengukuran besaran listrik (Budi Ashari, Ed.). UAD Press.

Rachmadi, T. (2020). Mengenal apa itu Internet of Things: Cara menghadapi industry 4.0 dimana kita diharuskan serba digital terus mempelajari teknologi baru atau Anda akan tertinggal oleh zaman (1st ed.). Tiga Ebook.

Royhan, M. (2020). Pemasangan lampu penerangan di ruang dengan sensor passive infrared receiver (PIR) terintegrasi Arduino. Journal of Informatics and Communications Technology (JICT), 2(2), 8–16. https://doi.org/10.52661/j_ict.v2i2.54

Susanto, A. T., & Purwoko, H. (2023). Perancangan proyek kantor Mitra Surya dengan pendalaman smart building system. Kreasi, 8(2), 16–29. https://doi.org/10.37715/kreasi.v8i2.4490

Zalfin, A. (2021). Studi pengaruh lekukan kabel terhadap arus listrik. Politeknik Negeri Ujung Pandang.

Zulkifli, Z., Muhallim, M., & Hasnahwati, H. (2024). Pengembangan sistem alarm dan pemadam kebakaran otomatis menggunakan Internet of Things. Jurnal Informatika dan Teknik Elektro Terapan, 12(3), 2444–2460. https://doi.org/10.23960/jitet.v12i3.4774

Downloads

Published

2025-09-26

How to Cite

A. Jagad Miftahul Rizqy, I Nyoman Satya Kumara, I Made Arsa Suyadnya, & I Wayan Sukerayasa. (2025). Perancangan User Interface pada Sistem Smart Building Berbasis Internet of Things. JURNAL RISET RUMPUN ILMU TEKNIK, 4(3), 528–552. https://doi.org/10.55606/jurritek.v4i3.6819

Similar Articles

<< < 8 9 10 11 12 13 14 15 > >> 

You may also start an advanced similarity search for this article.

Most read articles by the same author(s)