A Systematic Review of Advanced Sensor Technologies for Non-Destructive Testing and Structural Health Monitoring
Систематический обзор передовых сенсорных технологий для неруйнівного контроля и мониторинга состояния конструкций
2023-02-15
SCID: 54.1/832mn7nn
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acoustic emissiondata analytics for SHMdronesfiber opticslaser vibrometrymagnetostrictive sensorsmicroelectromechanical systems (MEMS)non-destructive testing (NDT)structural health monitoring (SHM)thermographyultrasonics
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Abstract (AI)
This paper reviews recent advances in sensor technologies for non-destructive testing (NDT) and structural health monitoring (SHM) of civil structures. The article is motivated by the rapid developments in sensor technologies and data analytics leading to ever-advancing systems for assessing and monitoring structures. Conventional and advanced sensor technologies are systematically reviewed and evaluated in the context of providing input parameters for NDT and SHM systems and for their suitability to determine the health state of structures. The presented sensing technologies and monitoring systems are selected based on their capabilities, reliability, maturity, affordability, popularity, ease of use, resilience, and innovation. A significant focus is placed on evaluating the selected technologies and associated data analytics, highlighting limitations, advantages, and disadvantages. The paper presents sensing techniques such as fiber optics, laser vibrometry, acoustic emission, ultrasonics, thermography, drones, microelectromechanical systems (MEMS), magnetostrictive sensors, and next-generation technologies.
Key Findings
1
A significant focus is placed on matching sensor technologies to provide appropriate input parameters for determining the health state of structures.
2
Recent advances in sensor technologies and data analytics are driving improved NDT and SHM systems for civil structures.
3
Selection criteria for presented technologies include capabilities, reliability, maturity, affordability, popularity, ease of use, resilience, and innovation.
4
The paper highlights strengths, limitations, advantages, and disadvantages of sensing technologies and associated data analytics for assessing structural health.
5
The review systematically evaluates conventional and advanced sensors (fiber optics, laser vibrometry, acoustic emission, ultrasonics, thermography, drones, MEMS, magnetostrictive, next-gen) for NDT/SHM suitability.
Research Object
Advanced sensor technologies for non-destructive testing (NDT) and structural health monitoring (SHM) of civil structures
Research Subject
Evaluation and systematic review of sensing techniques and associated data analytics for providing input parameters, determining structural health state, and assessing capabilities (reliability, maturity, affordability, ease of use, resilience, advantages and limitations)
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2023-02-15
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