Determination of Vibration Parameters of Deformable Structures Using Different Dynamic Loading Schemes and Types of Fiber-Optic Strain Sensors

This paper presents several approaches for determining the vibration parameters of thin-walled deformable structures under different dynamic loading regimes using two types of fiber-optic strain sensors. The parameters considered include vibration amplitudes and frequencies, logarithmic decrements and strain mode shapes. The results are presented for a carbon fiber-reinforced polymer plate with nonstandard geometry. The measurements were performed using single-point fiber-optic sensors based on fiber Bragg gratings and distributed fiber-optic sensors based on Rayleigh scattering. The considered dynamic regimes included steady-state forced vibration and free vibration. Free vibration was initiated either by terminating steady-state excitation at a resonant frequency or by releasing the specimen from an initial static deflection imposed at different points. The experiments yielded strain amplitude–frequency curves under steady-state forced vibration based on measurements obtained with point and distributed fiber-optic sensors. The capability of distributed sensors to provide a spatial representation of strain, particularly the strain mode shapes, was demonstrated. The paper also presents resonant frequencies and logarithmic decrements determined for different types of dynamic response of the specimen.

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Publication Details

Journal
Sensors
Published
2026-09-29
DOI
https://doi.org/10.3390/s26196179
Primary Topic
Advanced Fiber Optic Sensors
Type
article
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article

Determination of Vibration Parameters of Deformable Structures Using Different Dynamic Loading Schemes and Types of Fiber-Optic Strain Sensors

Andrey Yu. Fedorov, В. П. Матвеенко, Grigorii S. Serovaev, Elizaveta B. Galkina
Sensors
Advanced Fiber Optic Sensors
article

Determination of Vibration Parameters of Deformable Structures Using Different Dynamic Loading Schemes and Types of Fiber-Optic Strain Sensors

Andrey Yu. Fedorov, В. П. Матвеенко, Grigorii S. Serovaev, Elizaveta B. Galkina
article en

Abstract

This paper presents several approaches for determining the vibration parameters of thin-walled deformable structures under different dynamic loading regimes using two types of fiber-optic strain sensors. The parameters considered include vibration amplitudes and frequencies, logarithmic decrements and strain mode shapes. The results are presented for a carbon fiber-reinforced polymer plate with nonstandard geometry. The measurements were performed using single-point fiber-optic sensors based on fiber Bragg gratings and distributed fiber-optic sensors based on Rayleigh scattering. The considered dynamic regimes included steady-state forced vibration and free vibration. Free vibration was initiated either by terminating steady-state excitation at a resonant frequency or by releasing the specimen from an initial static deflection imposed at different points. The experiments yielded strain amplitude–frequency curves under steady-state forced vibration based on measurements obtained with point and distributed fiber-optic sensors. The capability of distributed sensors to provide a spatial representation of strain, particularly the strain mode shapes, was demonstrated. The paper also presents resonant frequencies and logarithmic decrements determined for different types of dynamic response of the specimen.

SensorsVol. 26(19)
Institute of Continuous Media Mechanics (RU)
Openalex Percentile: Top 22%
Advanced Fiber Optic Sensors
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Determination of Vibration Parameters of Deformable Structures Using Different Dynamic Loading Schemes and Types of Fiber-Optic Strain Sensors — Andrey Yu. Fedorov, В. П. Матвеенко, et al. · Sensors (2026) | TGRS Research Map | TGRS