Blockchain Application for Public Street Lighting in Data Sensor Recording

Main Article Content

Wiryo
Joni
Endah
Yohanes

Abstract

Public street lighting is crucial to illuminates streets at night to reduce accidents. But one of the weaknesses of


LED is their humidity and temperature. To make sure the longevity of the public street lighting, thermals


need to be managed. To thermally managed the public street lighting, a way to record humidity and


temperature is needed to take action. Blockchain is considered as a replacement to a conventional database


due to it being more secure compared to a traditional database. This paper is designing a prototype that


utilize a ESP32 microcontroller and an HTU21D as the humidity and temperature sensor. The results


shows both from the serial output of the microcontroller and from etherscan.io websites show successful


data recording.

Article Details

Section
Articles
Author Biographies

Wiryo, Tarumanagara University

Electrical Engineering Department, Faculty of Engineering

Joni, Tarumanagara University

Electrical Engineering Department, Faculty of Engineering

Endah, Tarumanagara University

Electrical Engineering Department, Faculty of Engineering

Yohanes, Tarumanagara University

Electrical Engineering Department, Faculty of Engineering

References

Crabb, G. I., Crinson, L., Beaumont, R., & Walter, L. (2008). The impact of street

lighting on nighttime road casualties. Transport Research Laboratory, Wokingham,

Berkshire.

Hui, S. Y. R., Chen, H., & Tao, X. (2012). An extended photoelectrothermal theory for

LED systems: A tutorial from device characteristic to system design for general lighting.

IEEE Transactions on Power Electronics, 27(11), 4571-4583.

Wardhani, W., Hadi, S., & Budiarto, J. (2021). Rancang Bangun Sistem Monitoring Suhu

dan Kelembaban Udara Pada Ruang Server Berbasis Wireless Sensor Network. JTT

(Jurnal Teknologi Terpadu), 9(2), 115-125.

Afzal, S., Faisal, A., Siddique, I., & Afzal, M. (2021). Internet of Things (IoT) Security:

Issues, Challenges and Solutions. Int. J. Sci. Eng. Res, 12(6), 52.

Guo, H., & Yu, X. (2022). A survey on blockchain technology and its security.

Blockchain: research and applications, 3(2), 100067.

Lwin, M. T., Yim, J., & Ko, Y. B. (2020). Blockchain-based lightweight trust management

in mobile ad-hoc networks. Sensors, 20(3), 698.

Van Bommel, W. (2014). Road lighting: Fundamentals, technology and application.

Springer.

Pasic, R., Kuzmanov, I., & Atanasovski, K. (2020). ESPRESSIF ESP32 development

board in wifi station communication mode. TEMEL-ij, 4(1), 1-6.

Awtar, S. (2022). Motion Sickness Alleviation via Anticipatory

Control of Active Seats in Autonomous Vehicles. University of

Michigan, Ann Arbor, Transportation Research Institute.

Humidity, R. (2013). HTU21D (F) Sensor Digital Relative Humidity sensor with

Temperature output HTU21D (F) Sensor Digital Relative Humidity sensor with

Temperature output. no. October, 1-21.