Acta Photonica Sinica, Volume. 52, Issue 12, 1206004(2023)
FBG Sensor System without Wavelength Correction Based on REC-DFB Tunable Laser
[1] MASSARONI C, ZALTIERI M, LO P D et al. Fiber Bragg grating sensors for cardiorespiratory monitoring: a review[J]. IEEE Sensors Journal, 21, 14069-14080(2021).
[2] EE Y J, TEY K S, LIM K S et al. Lithium-ion battery state of charge (soc) estimation with non-electrical parameter using uniform Fiber Bragg Grating (FBG)[J]. The Journal of Energy Storage, 40, 102704(2021).
[3] MIELOSZYK M, MAJEWSKA K, OSTACHOWICZ W. Application of embedded fiber Bragg grating sensors for structural health monitoring of complex composite structures for marine applications[J]. Marine Structures, 76, 102903(2021).
[4] FU Z, YANG D, YE W et al. Widely tunable compact erbium-doped fiber ring laser for fiber-optic sensing applications[J]. Optics & Laser Technology, 41, 392-396(2009).
[5] HU Y, CHEN S, ZHANG L et al. Multiplexing Bragg gratings using combined wavelength and spatial division techniques with digital resolution enhancement[J]. Electronics Letters, 33, 1973-1975(1997).
[6] DAVIS M A, KERSEY A D. Matched-filter interrogation technique for fiber Bragg grating arrays[J]. Electronics Letters, 31, 822-823(1995).
[7] SONG M, YIN S, RUFFIN P B. Fiber Bragg grating strain sensor demodulation with quadrature sampling of a Mach-Zehnder interferometer[J]. Applied Optics, 39, 1106-1111(2000).
[8] KERSEY A D, BERKOFF T A, MOREY W W. Multiplexed fiber Bragg grating strain-sensor system with a fiber Fabry-Perot wavelength filter[J]. Optics Letters, 18, 1370-1372(1993).
[9] YU Y L, TAM H Y, CHUNG W H. Technique for fiber Bragg grating array interrogation with a tunable Fabry-Perot filter[J]. Chinese Journal of Lasers, 27, 1103-1106(2000).
[10] MOON H M, KWAK S C, IM K et al. Wavelength interrogation system for quasi-distributed fiber Bragg grating temperature sensors based on a 50-GHz array waveguide grating[J]. IEEE Sensors Journal, 19, 2598-2604(2018).
[11] NIEWCZAS P, WILLSHIRE A J, DZIUDA L et al. Performance analysis of the fiber Bragg grating interrogation system based on an arrayed waveguide grating[J]. IEEE Transactions on Instrumentation and Measurement, 53, 1192-1196(2004).
[12] YUN S H, RICHARDSON D J, KIM B Y. Interrogation of fiber grating sensor arrays with a wavelength-swept fiber laser[J]. Optics Letters, 23, 843-845(1998).
[13] HILL D J, HODDER B, DE FREITAS J et al. DFB fiber-laser sensor developments[C], 5855, 904-907(2005).
[14] SHAO L Y, DONG X, ZHANG A P et al. High-resolution strain and temperature sensor based on distributed Bragg reflector fiber laser[J]. IEEE Photonics Technology Letters, 19, 1598-1600(2007).
[15] WANG Xiaona, WANG Qi, CHEN Lehua et al. Swept fiber laser based fiber optic sensor demodulator[J]. Acta Photonica Sinica, 38, 82-86(2009).
[16] ZHOU Chunxin, ZENG Qingke, QIN Zixiong et al. Principle and progress of fiber grating strain-temperature sensors[J]. Laser & Optoelectronics Progress, 43, 53-58(2006).
[17] LIU Jingwang, DU Zhenhui, LI Jinyi et al. An analytical model for the tuning characteristics of the static, dynamic, and transient behavior on temperature or injection current of DFB laser diodes[J]. Acta Physica Sinica, 60, 353-357(2011).
[18] JIANG Peng. Research on high-power laser modulation system and technology for FM/CW imaging lidar[D](2010).
[19] SHI Y, LI S, CHEN X et al. High channel count and high precision channel spacing multi-wavelength laser array for future PICs[J]. Scientific Reports, 4, 1-6(2014).
[20] LIU Jie, ZHAO Hong, WANG Peng et al. An optical current transformer based on DFB laser[J]. Journal of Opto-electronics Laser, 22, 1789-1792(2011).
[21] LEAL A G, FRIZERA A, MARQUES C. Thermal and mechanical analyses of fiber Bragg gratings-embedded polymer diaphragms[J]. IEEE Photonics Technology Letters, 1-1(2020).
[22] YU Q, ZHANG Y, DONG Y et al. Study on optical fiber Bragg grating temperature sensors for human body temperature monitoring[C](2012).
[23] LI Y, LU B, REN L et al. A highly precise FBG sensor interrogation system with wavemeter calibration[J]. Optical Fiber Technology, 48, 207-212(2019).
Get Citation
Copy Citation Text
Wei DENG, Pan DAI, Feng WANG, Hantian GE, Xiangfei CHEN. FBG Sensor System without Wavelength Correction Based on REC-DFB Tunable Laser[J]. Acta Photonica Sinica, 2023, 52(12): 1206004
Category: Fiber Optics and Optical Communications
Received: May. 19, 2023
Accepted: Aug. 23, 2023
Published Online: Feb. 19, 2024
The Author Email: Wei DENG (dengwei@njcit.cn)