Reprint

Fiber Bragg Grating Based Sensors and Systems

Edited by
July 2021
228 pages
  • ISBN978-3-0365-1286-0 (Hardback)
  • ISBN978-3-0365-1906-7 (PDF)

This book is a reprint of the Special Issue Fiber Bragg Grating Based Sensors and Systems that was published in

Chemistry & Materials Science
Engineering
Environmental & Earth Sciences
Summary
This book is a collection of papers that originated as a Special Issue, focused on some recent advances related to fiber Bragg grating-based sensors and systems. Conventionally, this book can be divided into three parts: intelligent systems, new types of sensors, and original interrogators. The intelligent systems presented include evaluation of strain transition properties between cast-in FBGs and cast aluminum during uniaxial straining, multi-point strain measurements on a containment vessel, damage detection methods based on long-gauge FBG for highway bridges, evaluation of a coupled sequential approach for rotorcraft landing simulation, wearable hand modules and real-time tracking algorithms for measuring finger joint angles of different hand sizes, and glaze icing detection of 110 kV composite insulators. New types of sensors are reflected in multi-addressed fiber Bragg structures for microwave–photonic sensor systems, its applications in load-sensing wheel hub bearings, and more complex influence in problems of generation of vortex optical beams based on chiral fiber-optic periodic structures. Original interrogators include research in optical designs with curved detectors for FBG interrogation monitors; demonstration of a filterless, multi-point, and temperature-independent FBG dynamical demodulator using pulse-width modulation; and dual wavelength differential detection of FBG sensors with a pulsed DFB laser.
Format
  • Hardback
License
© 2022 by the authors; CC BY-NC-ND license
Keywords
Fiber Bragg Grating (FBG); composite insulator with embedded FBGs; glaze icing; icing detection; fiber Bragg grating strain sensor; algorithm; hand motion capture; real-time tracking; fiber Bragg gratings; landing simulation; rotorcraft; coupled sequential method; landing structural response; finite element analysis (FEA); microwave-photonic sensor systems; Fiber Bragg Gratings; Addressed Fiber Bragg Structures; Multi-Addressed Fiber Bragg Structures; long-gauge FBG; damage detection; highway bridges; vehicle–bridge interaction; comparative study; fiber Bragg grating; fiber optic sensor; dynamic chirp; DFB laser; fiber Bragg gratings; chiral structures; orbital angular momentum; apodization; chirp; coupled modes theory; FBG; PWM; engine; high temperature; ECU; FBG demodulator; fiber Bragg grating; fiber sensing; high-speed interrogation; dynamic strain; microwave photonic sensor system; numerical simulation; addressed fiber Bragg structures; load-sensing bearings; vehicle dynamics control; Fibre Bragg Gratings; neutron diffraction; X-ray tomography; tensile test; fiber Bragg grating sensors; spectrograph; high angular dispersion; curved detectors; freeform optics