광섬유 FBG 센서를 이용한 재킷식 해양구조물의 국부손상 탐색 실내실험

Title
광섬유 FBG 센서를 이용한 재킷식 해양구조물의 국부손상 탐색 실내실험
Alternative Title
Laboratory Tests on Local Damage Detection for a Jacket-type Offshore Structure Using Optical FBG Sensors
Author(s)
박현준; 이진학
KIOST Author(s)
Yi, Jin-Hak(이진학)
Alternative Author(s)
이진학
Publication Year
2013-07-29
Abstract
The development of smart sensors for structural health monitoring and damage detection has been advanced remarkably in recent years. Nowadays fiber optic sensors, especially fiber Bragg grating (FBG) sensors, have attracted many researchers interest for their attractive features, such as multiplexing capability, durability, lightweight, and electromagnetic interference immunity. In this paper, a local damage detection approach of jacket-type offshore structures by principal component analysis (PCA) technique using FBG sensors are presented. An experimental study for a tidal current power plant structure as one of jacket-type offshore structures was conducted to investigate the feasibility of the proposed method for damage detection and localization. It has been found that the PCA technique can more efficiently eliminate environmental effects from raw data measured by FBG sensors, resulting more damage-sensitive features under various environmental changes interest for their attractive features, such as multiplexing capability, durability, lightweight, and electromagnetic interference immunity. In this paper, a local damage detection approach of jacket-type offshore structures by principal component analysis (PCA) technique using FBG sensors are presented. An experimental study for a tidal current power plant structure as one of jacket-type offshore structures was conducted to investigate the feasibility of the proposed method for damage detection and localization. It has been found that the PCA technique can more efficiently eliminate environmental effects from raw data measured by FBG sensors, resulting more damage-sensitive features under various environmental changes
URI
https://sciwatch.kiost.ac.kr/handle/2020.kiost/26847
Bibliographic Citation
The Ninth International Workshop on Advanced Smart Materials and Smart Structures Technology, pp.31, 2013
Publisher
UNIST
Type
Conference
Language
English
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