RANCANG BANGUN SISTEM KENDALI PERANGKAT  SMART HOME BERBASIS ANDROID

Authors

  • Nur Yanti Politeknik Negeri Balikpapan
  • Fathur Zaini Rachman Politeknik Negeri Balikpapan
  • Dwi Lesmideyarti
  • Mikail Eko Prasetyo
  • Hilmansyah

DOI:

https://doi.org/10.54463/wb38qm61

Abstract

Perangkat elektronik di rumah umumnya dikendalikan secara konvensional melalui saklar manual. Sistem smart home untuk mengendalikan dan memonitoring perangkat elektronik masih menggunakan sistem kabel dan berbasis desktop, sehingga diperlukan pengembangan sistem smart home nirkabel yang dapat dikendalikan dari jarak jauh. Teknologi smart home yang dirancang bertujuan untuk mengendalikan dan memantau perangkat elektronik yang berada di rumah, mengurangi sistem kabel yang rumit, meningkatkan efisiensi energi, dan keamanan rumah saat berada dalam kondisi kosong. Dengan menggunakan metode eksperimental, diagram fishbone digunakan untuk merancang smart home, dengan tahap-tahap pengembangan perangkat keras, perangkat lunak, dan perangkat I/O. Sistem smart home yang dihasilkan dapat mengendalikan lampu, kipas, dan buzzer, serta memantau secara jarak jauh suhu ruangan, kelembaban, dan kondisi pintu rumah menggunakan aplikasi Android dengan antarmuka Blynk.

 

Kata kunci: android, sistem kendali, smart home

References

[1] H. Yar, A. S. Imran, Z. A. Khan, M. Sajjad, and Z. Kastrati, “Towards smart home automation

using iot-enabled edge-computing paradigm,” Sensors, vol. 21, no. 14, Jul. 2021, doi:

10.3390/s21144932.

[2] M. Li, W. Gu, W. Chen, Y. He, Y. Wu, and Y. Zhang, “Smart home?architecture, technologies

and systems,” in Procedia Computer Science, Elsevier B.V., 2018, pp. 393–400. doi:

10.1016/j.procs.2018.04.219.

[3] A. Almusaed, I. Yitmen, and A. Almssad, “Enhancing Smart Home Design with AI Models: A

Case Study of Living Spaces Implementation Review,” Mar. 01, 2023, MDPI. doi:

10.3390/en16062636.

[4] P. P. Morita, K. S. Sahu, and A. Oetomo, “Health Monitoring Using Smart Home Technologies:

Scoping Review,” 2023, JMIR Publications Inc. doi: 10.2196/37347.

[5] O. Taiwo and A. E. Ezugwu, “Internet of Things-Based Intelligent Smart Home Control

System,” Security and Communication Networks, vol. 2021, 2021, doi: 10.1155/2021/9928254.

[6] I. Cviti?, D. Perakovi?, M. Periša, and B. Gupta, “Ensemble machine learning approach for

classification of IoT devices in smart home,” International Journal of Machine Learning and

Cybernetics, vol. 12, no. 11, pp. 3179–3202, Nov. 2021, doi: 10.1007/s13042-020-01241-0.

[7] A. Chakraborty, M. Islam, F. Shahriyar, S. Islam, H. U. Zaman, and M. Hasan, “Smart Home

System: A Comprehensive Review,” 2023, Hindawi Limited. doi: 10.1155/2023/7616683.

[8] D. H. A. NST and J. Sutopo, “Development of AR Android Application for Disability and

Elderly-Friendly Smart Home Control,” International Journal of Information technology and

Computer Engineering, no. 41, pp. 32–42, Dec. 2023, doi: 10.55529/ijitc.41.32.42.

[9] N. Nagashree and R. Banu, “Smart Home Android Application Using Zigbee Technology.”

[Online]. Available: www.ijert.org

[10] S. Kumar, “Ubiquitous Smart Home System Using Android Application,” International journal

of Computer Networks & Communications, vol. 6, no. 1, pp. 33–43, Jan. 2014, doi:

10.5121/ijcnc.2014.6103.

[11] A. N. Sharkawy, M. Hasanin, M. Sharf, M. Mohamed, and A. Elsheikh, “Development of Smart

Home Applications Based on Arduino and Android Platforms: An Experimental Work,”

Automation, vol. 3, no. 4, pp. 579–595, Dec. 2022, doi: 10.3390/automation3040029.

Downloads

Published

2026-02-25

Issue

Section

Articles