• Laser & Optoelectronics Progress
  • Vol. 59, Issue 19, 1900004 (2022)
Gang Cheng1、2、3、*, Zhenxue Wang1, Honghu Zhu2, Dongyan Li1, and Qian Ma2
Author Affiliations
  • 1School of Computer Science, North China Institute of Science and Technology (National Safety Training Center of Coal Mines), Beijing 101601, China
  • 2School of Earth Sciences and Engineering, Nanjing University, Nanjing 210023, Jiangsu, China
  • 3Nanjing University High-Tech Institute at Suzhou, Suzhou 215123, Jiangsu, China
  • show less
    DOI: 10.3788/LOP202259.1900004 Cite this Article Set citation alerts
    Gang Cheng, Zhenxue Wang, Honghu Zhu, Dongyan Li, Qian Ma. Research Review of Rock and Soil Deformation Monitoring Based on Distributed Fiber Optic Sensing[J]. Laser & Optoelectronics Progress, 2022, 59(19): 1900004 Copy Citation Text show less
    References

    [1] Shi B, Xu X J, Wang D et al. Study on BOTDR-based distributed optical fiber strain measurement for tunnel health diagnosis[J]. Chinese Journal of Rock Mechanics and Engineering, 24, 2622-2628(2005).

    [2] Li Z X, Hou G Y, Hu T et al. Deformation behavior monitoring of a tunnel in its temporary shoring demolishing process using optical fiber sensing technology[J]. Measurement, 176, 109170(2021).

    [3] Wang F, Zhao L, Wu X D et al. Measurement and analysis of concrete deformation field based on CT and digital image correlation method[J]. Laser & Optoelectronics Progress, 57, 21-28(2020).

    [4] Shi B. On the ground sensing system and ground sensing engineering[J]. Journal of Engineering Geology, 25, 582-591(2017).

    [5] Wang D Y, Zhu H H, Zhu Y et al. Performances of distributed fiber optic strain sensor with thin-walled ring[J]. Laser & Optoelectronics Progress, 56, 54-59(2019).

    [6] Shi B, Zhang D, Zhu H H[M]. Distributed fiber optic sensing for geoengineering monitoring(2019).

    [7] Zhu H H, Shi B, Zhang C C. Current progress and trends in opto-electronic sensor-based monitoring in geo-engineering: a summary of 6th OSMG-2017[J]. Journal of Engineering Geology, 28, 178-188(2020).

    [8] Soga K. Understanding the real performance of geotechnical structures using an innovative fibre optic distributed strain measurement technology[J]. Rivista Italiana di Geotecnica, 48, 7-48(2014).

    [9] Bao X Y, Chen L. Recent progress in distributed fiber optic sensors[J]. Sensors, 12, 8601-8639(2012).

    [10] Ansari F. Practical implementation of optical fiber sensors in civil structural health monitoring[J]. Journal of Intelligent Material Systems and Structures, 18, 879-889(2007).

    [11] Wu H, Zhu H H, Zhou G Y et al. Experimental study on distributed monitoring of soil shear displacement considering deformation compatibility[J]. Journal of Engineering Geology, 28, 716-724(2020).

    [12] Wu Z S, Zhang H, Yang C Q. Development and performance evaluation of non-slippage optical fiber as Brillouin scattering-based distributed sensors[J]. Structural Health Monitoring, 9, 413-431(2010).

    [13] Dong Y K, Chen X, Liu E H et al. Quantitative measurement of dynamic nanostrain based on a phase-sensitive optical time domain reflectometer[J]. Applied Optics, 55, 7810-7815(2016).

    [14] Chai J, Xue Z W, Guo R et al. Experimental study of overlying mine strata collapse and its evolution by a distributed optical fiber system[J]. Journal of China University of Mining & Technology, 47, 1185-1192(2018).

    [15] Hill K O, Fujii Y, Johnson D C et al. Photosensitivity in optical fiber waveguides: application to reflection filter fabrication[J]. Applied Physics Letters, 32, 647-649(1978).

    [16] Jia S L. Research on the key technologies of FBG demodulation system and OTDR networking[D], 9-13(2012).

    [17] Zhu H H, Yin J H, Jin W et al. Health monitoring of foundations using fiber Bragg grating sensing technology[J]. China Civil Engineering Journal, 43, 109-115(2010).

    [18] Jia L X. Research on perceived pole of geotechnical engineering based on optical fiber sensing technology[D](2017).

    [19] Li H. Based on OTDR and light power test of fiber optic fault monitoring application[J]. Computer Measurement & Control, 22, 1357-1359(2014).

    [20] Habel W R, Krebber K. Fiber-optic sensor applications in civil and geotechnical engineering[J]. Photonic Sensors, 1, 268-280(2011).

    [21] Kurashima T, Horiguchi T, Izumita H et al. Brillouin optical-fiber time domain reflectometry[J]. IEICE Transactions on Communications, 76, 382-390(1993).

    [22] Sasaki T, Park J, Soga K et al. Distributed fibre optic strain sensing of an axially deformed well model in the laboratory[J]. Journal of Natural Gas Science and Engineering, 72, 103028(2019).

    [23] Sui H B, Shi B, Zhang D et al. Study on distributed optical fiber sensor-based monitoring for slope engineering[J]. Chinese Journal of Rock Mechanics and Engineering, 27, 3725-3731(2008).

    [24] Shi Y X. Study for distributed fiber optic strain monitoring system[D](2010).

    [25] Horiguchi T, Tateda M. BOTDA-nondestructive measurement of single-mode optical fiber attenuation characteristics using Brillouin interaction: theory[J]. Journal of Lightwave Technology, 7, 1170-1176(1989).

    [26] Sui H B, Shi B, Zhang D et al. Review on fiber optic sensor-based monitoring techniques for geological and geotechnical engineering[J]. Journal of Engineering Geology, 16, 135-143(2008).

    [27] Garcus D, Gogolla T, Krebber K et al. Brillouin optical-fiber frequency-domain analysis for distributed temperature and strain measurements[J]. Journal of Lightwave Technology, 15, 654-662(1997).

    [28] Cheng G. Research on key technologies and application of distributed fiber optic sensing for overlying rock deformation during coal mining[D](2016).

    [29] Li Y P, Li F, Li J G et al. Application of distributed acoustic sensing in borehole seismic exploration[J]. Geophysical Prospecting for Petroleum, 59, 242-249(2020).

    [30] Cai H W, Ye Q, Wang Z Y et al. Distributed optical fiber acoustic sensing technology based on coherent Rayleigh scattering[J]. Laser & Optoelectronics Progress, 57, 1-16(2020).

    [31] Zhou X H, Chen W, Yang J F et al. Application review of DAS technology in oil and gas geophysics[J]. Progress in Geophysics, 36, 338-350(2021).

    [32] Bai L, Zheng G, Guo Y et al. Analysis and compensation method of temperature characteristics of high-precision frequency-modulated continuous wave fiber optic pressure sensor[J]. Laser & Optoelectronics Progress, 58, 393-401(2021).

    [33] Jiao H R. Study on the temperature effects on fiber optic cables (sensors) used for geological and geotechnical monitoring[D], 2-7(2019).

    [34] Tian S Z, Zhao X F, Ou J P et al. Research on temperature compensation of fiber Bragg grating for structural health monitoring[J]. Journal of Transducer Technology, 21, 8-10(2002).

    [35] Zhu H H, Yin J H, Hong C Y et al. Fiber optic based monitoring technologies of slope engineering[J]. Geotechnical Investigation & Surveying, 38, 6-10(2010).

    [36] Chen M. Temperature self-compensating fiber Bragg grating strain sensor[D], 9-12(2010).

    [37] Bao X Y, Smith J, Brown A W. Temperature and strain measurements using the power, line-width, shape, and frequency shift of the Brillouin loss spectrum[J]. Proceedings of SPIE, 4920, 311-322(2002).

    [38] Alahbabi M N, Cho Y, Newson T P. Simultaneous temperature and strain measurement with combined spontaneous Raman and Brillouin scattering[J]. Optics Letters, 30, 1276-1278(2005).

    [39] Zhang Y, Tan Y H, Tao X G et al. Research on some aspects of optical fiber sensors FBG and BOTDR applied in structural health monitoring[J]. Journal of Disaster Prevention and Mitigation Engineering, 24, 465-470(2004).

    [40] Wang B J, Li K, Shi B et al. Test on application of distributed fiber optic sensing technique into soil slope monitoring[J]. Landslides, 6, 61-68(2009).

    [41] Cheng G, Shi B, Zhu H H et al. A field study on distributed fiber optic deformation monitoring of overlying strata during coal mining[J]. Journal of Civil Structural Health Monitoring, 5, 553-562(2015).

    [42] Shi B, Xu H Z, Zhang D et al. Feasibility study on application of BOTDR to health monitoring for large infrastructure engineering[J]. Chinese Journal of Rock Mechanics and Engineering, 23, 493-499(2004).

    [43] Li K, Shi B, Tang C S et al. Feasibility research on soil deformation monitoring with distributed optical fiber sensing technique[J]. Rock and Soil Mechanics, 31, 1781-1785(2010).

    [44] Zhang D, Xu H Z, Shi B et al. FBG technology based experimental studies on cracking of expansive soil due to dehydration[J]. Journal of Engineering Geology, 20, 103-108(2012).

    [45] Cheng G, Shi B, Zhu H H et al. Experimental study on coupling performance of fiber and sand interface based on distributed sensing[J]. Geological Journal of China Universities, 25, 487-494(2019).

    [46] Zhang C C, Shi B, Gu K et al. Vertically distributed sensing of deformation using fiber optic sensing[J]. Geophysical Research Letters, 45, 11732-11741(2018).

    [47] Sun Y J, Zhang Q, Cheng G et al. Optical frequency domain reflectometry technology based theoretical analysis and experiment on strain transferring of surface-attached optical fiber sensor[J]. Science Technology and Engineering, 18, 46-52(2018).

    [48] Cheng G, Shi B, Lu Y et al. A distributed testing method for foundation anchors[J]. Hydrogeology and Engineering Geology, 43, 89-95(2016).

    [49] Wang X, Shi B, Wei G Q et al. Monitoring the behavior of segment joints in a shield tunnel using distributed fiber optic sensors[J]. Structural Control and Health Monitoring, 25, e2056(2018).

    [50] Monsberger C, Lienhart W, Hirschmüller S et al. Monitoring of soil nailed slope stabilizations using distributed fiber optic sensing[J]. Proceedings of SPIE, 10598, 778-789(2018).

    [51] Sun Y J, Zhang D, Tong H J et al. Research of distributed fiber optic sensing technology in monitoring of Majiagou landslide of Three Gorges[J]. The Chinese Journal of Geological Hazard and Control, 24, 97-102(2013).

    [52] Wu J H, Jiang H T, Su J W et al. DFOS-based monitoring on quaternary sediments deformation and land subsidence in Suzhou, China[J]. Journal of Engineering Geology, 24, 56-63(2016).

    [53] Zhang P S, Zhang D, Sun B Y et al. Optical fiber monitoring technology for evolution characteristic of rock stratum deformation and failure in space of mining field[J]. Journal of Engineering Geology, 27, 260-266(2019).

    [54] Tian G J. Study on fiber Bragg grating embedded in carbon fiber composites[D](2010).

    [55] Xu L, Cheng G, Zhu H H. Research review of landslide monitoring methods based on integration of space-air-ground-interior[J]. Laser & Optoelectronics Progress, 58, 90-103(2021).

    [56] Zhu H H, Shi B, Yan J F et al. Physical model testing of slope stability based on distributed fiber-optic strain sensing technology[J]. Chinese Journal of Rock Mechanics and Engineering, 32, 821-828(2013).

    [57] Sun Y J. Bank slope multi-fields monitoring based on fiber optic sensing technologies and stability evaluation study[D], 69-77(2015).

    [58] Zhu H H, Ho A N L, Yin J H et al. An optical fibre monitoring system for evaluating the performance of a soil nailed slope[J]. Smart Structures and Systems, 9, 393-410(2012).

    [59] Li Q W, Pei H F, Song H B et al. Prediction of slope displacement based on PSO-SVR-NGM combined with entropy weight method[J/OL]. Journal of Engineering Geology, 1-10. https://doi.org/10.13544/j.cnki.jeg.2021-0036

    [60] Zhang L, Shi B, Zhu H H et al. PSO-SVM-based deep displacement prediction of Majiagou landslide considering the deformation hysteresis effect. Landslides, 18, 179-193(2021).

    [61] Zhu H H, Yin J H, Zhang L et al. Monitoring internal displacements of a model dam using FBG sensing bars[J]. Advances in Structural Engineering, 13, 249-261(2010).

    [62] Cui H L. Research on BOTDA based sensing technology and hydropower structure monitoring[D](2018).

    [63] Bao T F, Zhao J L, Li J M. Multiplexing capability analysis of crack monitoring of a concrete dam based on POF-OTDR[J]. Journal of Tianjin University (Science and Technology), 52, 804-809(2019).

    [64] Gómez J, Casas J R, Villalba S. Structural health monitoring with distributed optical fiber sensors of tunnel lining affected by nearby construction activity[J]. Automation in Construction, 117, 103261(2020).

    [65] Wu J H, Ye S M, Zhang J Q et al. Structural health monitoring of large-section tunnel of Jingxiong high-speed railway based on fiber Bragg grating monitoring technology[J]. Laser & Optoelectronics Progress, 57, 113-121(2020).

    [66] Wang X. Key technology and application research in shield tunnel deformation monitoring based on fiber optic sensing technologies[D](2017).

    [67] Zhang Y, Shi B, Tang G Q. Application of fiber grating sensing technology in deformation monitoring of cavern surrounding rock[J]. Yangtze River, 50, 126-130(2019).

    [68] Jin L H, Yue H, Wu L M. Research on statistical analysis of urban ground subsidence information obtained by InSAR technology[J]. Geomatics & Spatial Information Technology, 44, 200-205(2021).

    [69] Shi B, Gu K, Wei G Q et al. Full section monitoring of land subsidence borehole using distributed fiber optic sensing techniques[J]. Journal of Engineering Geology, 26, 356-364(2018).

    [70] Lu Y, Yu J, Gong X L et al. Experimental study on distributed monitoring of ground collapse deformation based on BOFDA[J]. Geological Journal of China Universities, 24, 778-786(2018).

    [71] Xu J, He J P, Chen J N. Collapse monitoring of subgrade based on distributed optical fiber vibration sensing technique[J]. Shanxi Architecture, 41, 140-141(2015).

    [72] Wu W J. Research on pipeline structure state recognition method based on distributed fiber sensing monitoring[D](2018).

    [73] Zhu H H, Wang D Y, Wang B J et al. Experimental study on pipe-soil interaction using fiber optic sensing and digital image analysis[J]. Journal of Engineering Geology, 28, 317-326(2020).

    [74] Zhang S H, Liu B, He J P. Pipeline deformation monitoring using distributed fiber optical sensor[J]. Measurement, 133, 208-213(2019).

    [75] Minardo A, Coscetta A, Porcaro G et al. Structural health monitoring in the railway field by fiber-optic sensors[J]. Lecture Notes in Electrical Engineering, 319, 359-363(2015).

    [76] Liu D L, Huang X G. Condition monitoring and preventive maintenance of ballastless track systems for high-speed railways[J]. China Mechanical Engineering, 30, 349-353(2019).

    [77] Zhang C, Tao Y, Tong X L et al. Monitoring system of railway track based on identity weak fiber Bragg grating array[J]. Infrared and Laser Engineering, 48, 379-385(2019).

    [78] Su J Q. Acoustic sensing technology of distributed type supporting condition-based maintenance strategy[J]. Modern Urban Transit, 87-91(2019).

    Gang Cheng, Zhenxue Wang, Honghu Zhu, Dongyan Li, Qian Ma. Research Review of Rock and Soil Deformation Monitoring Based on Distributed Fiber Optic Sensing[J]. Laser & Optoelectronics Progress, 2022, 59(19): 1900004
    Download Citation