Jin Tae Kim, Jung In Jeon, Seong Yeob Jeong, Chang Jun Ahn, Jae Sang Cha, Ju Phil Cho, Seung Youn Yang
언어
영어(ENG)
URL
https://www.earticle.net/Article/A481095
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원문정보
초록
영어
This study designed and implemented a real-time monitoring system combining IoT sensors and edge computing technology to ensure safety and efficient management at hydrogen pipeline construction sites. The system consists of environmental sensors for temperature, humidity, fire, and dust, as well as on-site sensors for vibration and noise detection. The Edge RTU(Remote Terminal Unit) collects and analyzes data in real time to determine any abnormalities. These results are transmitted to a remote control center via an IoT interface, and the control center monitors the status of the hydrogen pipeline network in real time using a user interface (UI). Communication performance tests conducted at a distance of 50 meters demonstrated a 100% success rate for Wi-Fi-based communication, compared to 97% for LoRa-based communication. Furthermore, by applying an edge-based anomaly detection algorithm, data transmission volume was reduced by approximately 63% while maintaining an anomaly detection accuracy of greater than 95%. Based on the experimental results and analysis, the proposed system is expected to serve as a low-latency, highly reliable real-time monitoring platform, contributing to improved safety management and the advancement of validation technologies for hydrogen urban pipeline infrastructure.
목차
Abstract 1. INTRODUCTION 2. SYSTEM STRUCTURE 2.1 Platform Layer 2.2 Edge Computing Layer 2.3 Field Layer 2.4 Data Flow Summary 3. SYSTEM IMPLEMENTATION 4. IMPLEMENTATION RESULT AND ANALYSIS 5. Conclusion ACKNOWLEDGEMENT REFERENCES
키워드
Hydrogen pipeIoTEdge computingMonitoringRemote terminal unit
저자
Jin Tae Kim [ Fivetek CO.,LTD., Seongnam-Si, Gyeonggi-Do, Korea ]
Jung In Jeon [ Fivetek CO.,LTD., Seongnam-Si, Gyeonggi-Do, Korea ]
Seong Yeob Jeong [ Fivetek CO.,LTD., Seongnam-Si, Gyeonggi-Do, Korea ]
Chang Jun Ahn [ Dept. of Electrical and Electronic Eng., Chiba University, Japan ]
Jae Sang Cha [ Dept. of Electrical and Electronic Eng., Chiba University, Japan ]
Ju Phil Cho [ Department of Integrated IT & Communication Engineering, Kunsan National University, Korea ]
Seung Youn Yang [ Fivetek CO.,LTD., Seongnam-Si, Gyeonggi-Do, Korea ]
Corresponding Author
국제문화기술진흥원 [The International Promotion Agency of Culture Technology]
설립연도
2009
분야
공학>공학일반
소개
본 진흥원은 문화기술(Culture Technology) 관련 산·학·연·관으로 구성된 비영리 단체이다. 문화기술(CT)은 정보통신기술(ICT), 문화적 사고 기반의 예술, 인문학, 디자인, 사회과학기술이 접목된 신융합기술(New Convergence Technology, NCT)로 정의한다. 인간의 삶의 질을 향상시키고, 진보된 방향으로 변화시키고, 문화기술 관련 분야의 학술 및 기술의 발전과 진흥에 공헌하기 위하여, 제3조의 필요한 사업을 행함을 그 목적으로 한다.
간행물
간행물명
International Journal of Advanced Culture Technology(IJACT)
간기
계간
pISSN
2288-7202
eISSN
2288-7318
수록기간
2013~2025
등재여부
KCI 등재
십진분류
KDC 600DDC 700
이 권호 내 다른 논문 / International Journal of Advanced Culture Technology(IJACT) Volume 13 Number 4