Acta Optica Sinica, Volume. 44, Issue 1, 0106007(2024)
Multi-Mechanism Distributed Fiber-Optic Sensing Technology
[1] Zhao Y D, Wang M G, Zhang J et al. Distributed optical fiber vibration sensing system with high spatial resolution and large bandwidth[J]. Acta Optica Sinica, 42, 1906004(2022).
[2] Ni J S, Liu T G, Shang Y et al. Distributed fiber-optic acoustic seismic geophone for petroleum geology exploration[J]. Laser & Optoelectronics Progress, 59, 0306006(2022).
[3] Wang H P. Influence of interfacial effect between distributed optical fiber sensors and monitored structures[J]. Acta Optica Sinica, 42, 0206004(2022).
[4] Peng F, Cao X L. A hybrid Φ/B-OTDR for simultaneous vibration and strain measurement[J]. Photonic Sensors, 6, 121-126(2016).
[5] Zhou X, Wang F, Liu Z et al. Hybrid B-OTDR/Φ-OTDR for multi-parameter measurement from a single end of fiber[J]. Optics Express, 30, 29117-29127(2022).
[6] Coscetta A, Catalano E, Cerri E et al. Hybrid Brillouin/Rayleigh sensor for multiparameter measurements in optical fibers[J]. Optics Express, 29, 24025-24030(2021).
[7] Wang B Z, Ba D X, Chu Q et al. High-sensitivity distributed dynamic strain sensing by combining Rayleigh and Brillouin scattering[J]. Opto-Electronic Advances, 3, 20001301-20001315(2020).
[8] Zhang X P, Hu J H, Zhang Y X. A hybrid single-end-access BOTDA and COTDR sensing system using heterodyne detection[J]. Journal of Lightwave Technology, 31, 1954-1959(2013).
[9] Zhang J D, Zhu T, Zhou H et al. High spatial resolution distributed fiber system for multi-parameter sensing based on modulated pulses[J]. Optics Express, 24, 27482-27493(2016).
[10] Fu Y, Wang Z N, Zhu R C et al. Ultra-long-distance hybrid BOTDA/Ф-OTDR[J]. Sensors, 18, 976(2018).
[11] Dang Y L, Zhao Z Y, Tang M et al. Towards large dynamic range and ultrahigh measurement resolution in distributed fiber sensing based on multicore fiber[J]. Optics Express, 25, 20183-20193(2017).
[12] Murray M J, Murray J B, Ogden H M et al. Dynamic temperature-strain discrimination using a hybrid distributed fiber sensor based on Brillouin and Rayleigh scattering[J]. Optics Express, 31, 287-300(2022).
[13] Zhou D P, Li W H, Chen L et al. Distributed temperature and strain discrimination with stimulated Brillouin scattering and Rayleigh backscatter in an optical fiber[J]. Sensors, 13, 1836-1845(2013).
[14] Kishida K, Yamauchi Y, Guzik A. Study of optical fibers strain-temperature sensitivities using hybrid Brillouin-Rayleigh system[J]. Photonic Sensors, 4, 1-11(2014).
[15] Wang Y, Bao X Y. Single-shot hybrid CP‑ϕ OTDR/CP-BOTDA system for simultaneous distributed temperature/strain sensing[C], Th2A.15(2022).
[16] Clément P, Gabet R, Lanticq V et al. B-OTDR solution for independent temperature and strain measurement in a single acquisition[J]. Journal of Lightwave Technology, 39, 6013-6020(2021).
[17] Huang L J, He Z Y, Fan X Y. Simplified single-end Rayleigh and Brillouin hybrid distributed fiber-optic sensing system[J]. Science China Information Sciences, 66, 129404(2023).
[18] Huang L J, Fan X Y, He Z Y. Hybrid distributed fiber-optic sensing system by using Rayleigh backscattering lightwave as probe of stimulated Brillouin scattering[J]. Journal of Lightwave Technology, 41, 4374-4380(2023).
[19] Zhou J. Research on key technologies of multi-parameter distributed optical fiber sensing system[D](2015).
[20] Zhao Z Y, Dang Y L, Tang M et al. Enabling simultaneous DAS and DTS through space-division multiplexing based on multicore fiber[J]. Journal of Lightwave Technology, 36, 5707-5713(2018).
[21] Muanenda Y, Oton C J, Faralli S et al. Hybrid distributed acoustic and temperature sensor using a commercial off-the-shelf DFB laser and direct detection[J]. Optics Letters, 41, 587-590(2016).
[22] Zhou Z X, Tian L, Han Y S et al. Distributed vibration and temperature simultaneous sensing using one optical fiber[J]. Optics Communications, 487, 126801-126806(2021).
[23] Zhang Y X, Cai Y S, Xiong F et al. A hybrid distributed optical fibre sensor for acoustic and temperature fields reconstruction[J]. Optics Communications, 435, 134-139(2019).
[24] Alahbabi M N, Cho Y T, Newson T P. Simultaneous distributed measurements of temperature and strain using spontaneous Raman and Brillouin scattering[J]. Proceedings of SPIE, 5502, 488-491(2004).
[25] Brown K A, Brown A W, Colpitts B G. Combined Raman and Brillouin scattering sensor for simultaneous high-resolution measurement of temperature and strain[J]. Proceedings of SPIE, 6167, 616716(2006).
[26] Taki M, Signorini A, Oton C J et al. Hybrid Raman/Brillouin-optical-time-domain-analysis-distributed optical fiber sensors based on cyclic pulse coding[J]. Optics Letters, 38, 4162-4165(2013).
[27] Zhao Z Y, Dang Y L, Tang M et al. Spatial-division multiplexed hybrid Raman and Brillouin optical time-domain reflectometry based on multi-core fiber[J]. Optics Express, 24, 25111-25118(2016).
[28] Huang L J, Fan X Y, He H J et al. Single-end hybrid Rayleigh Brillouin and Raman distributed fibre-optic sensing system[J]. Light: Advanced Manufacturing, 4, 16(2023).
[29] Zhu T, He Q, Xiao X H et al. Modulated pulses based distributed vibration sensing with high frequency response and spatial resolution[J]. Optics Express, 21, 2953-2963(2013).
[30] Fang G S, Xu T W, Feng S W et al. Phase-sensitive optical time domain reflectometer based on phase-generated carrier algorithm[J]. Journal of Lightwave Technology, 33, 2811-2816(2015).
[31] He H J, Shao L Y, Li Z L et al. Distributed vibration sensing with high frequency response based on frequency division multiplexing[C], M2D.1(2016).
[32] Ma P F, Sun Z S, Liu K et al. Distributed fiber optic vibration sensing with wide dynamic range, high frequency response, and multi-points accurate location[J]. Optics & Laser Technology, 124, 105966(2020).
[33] Sun Z S, Liu K, Jiang J F et al. Dynamic phase extraction in an ameliorated distributed vibration sensor using a highly stable homodyne detection[J]. IEEE Sensors Journal, 21, 27005-27014(2021).
[34] Sun Z S, Liu K, Jiang J F et al. Distributed vibration sensing with high frequency response by using WDM based integrated scheme[J]. Journal of Physics D: Applied Physics, 53, 155106-155112(2020).
[35] Li Z Y, Tong Y H, Fu X L et al. Simultaneous distributed static and dynamic sensing based on ultra-short fiber Bragg gratings[J]. Optics Express, 26, 17437-17446(2018).
[36] Lan C G, Zhou Z, Ou J P. Monitoring of structural prestress loss in RC beams by inner distributed Brillouin and fiber Bragg grating sensors on a single optical fiber[J]. Structural Control and Health Monitoring, 21, 317-330(2014).
[37] Li F, Zhao W G, Xu H B et al. A highly integrated BOTDA/XFG sensor on a single fiber for simultaneous multi-parameter monitoring of slopes[J]. Sensors, 19, 2132(2019).
[38] Xue K, Liu K, Jiang J F et al. Optical fiber vibration sensing detection with high accuracy based on YOLOv5s model[J]. Acta Optica Sinica, 43, 0228001(2023).
[39] Yu M, Zhang Y L, He Y T et al. Variational mode decomposition and permutation entropy method for denoising of distributed optical fiber vibration sensing system[J]. Acta Optica Sinica, 42, 0706005(2022).
Get Citation
Copy Citation Text
Linjing Huang, Xiao Zhou, Xinyu Fan, Feng Wang, Xuping Zhang, Zuyuan He. Multi-Mechanism Distributed Fiber-Optic Sensing Technology[J]. Acta Optica Sinica, 2024, 44(1): 0106007
Category: Fiber Optics and Optical Communications
Received: Sep. 4, 2023
Accepted: Oct. 30, 2023
Published Online: Jan. 12, 2024
The Author Email: Fan Xinyu (fan.xinyu@sjtu.edu.cn), Wang Feng (wangfeng@nju.edu.cn)
CSTR:32393.14.AOS231516