Chinese Journal of Lasers, Volume. 37, Issue 11, 2749(2010)
Distributed Optical Fiber Raman Photon Sensor Research Review
[1] [1] Zhang Zaixuan, Insoo S. Kim, Wang Jianfeng et al.. Distributed optical fiber sensors system and networks[C]. SPIE, 2001, 4357: 35~53
[2] [2] Zhang Zaixuan, Liu Honglin, Guo Ning et al.. 30 km distributed optical fiber Raman photons temperature lidar[C]. SPIE, 2003, 4893: 78~82
[6] [6] Zhang Zaixuan, The research of temperature effect of optical fiber molecular and application progress for distributed optical fiber temperature sensor network [J]. Journal Atomic and Molecular Physics, 2000, 17(3): 559~565
[7] [7] Zhang Zaixuan, Liu Honglin, Wang Jianfeng et al.. Optimum design of 30 km long-distance distributed optical fiber Raman temperature sensor system (invited paper)[C]. SPIE, 2004, 5634: 182~190
[8] [8] A. J. Rogers. Polarisation optical time domain reflectometry[J]. Electron. Lett., 1980, 16(13): 489~490
[9] [9] A. H. Hartog, D. N. Payne. Fiber optic temperature distribution sensor[C]. Proc, IEE Colloq Optical Fibre Sensors, 1982
[10] [10] J. P. Dakin, D. J. Pratt, G. W. Bibby. Distributed anti-Stokes ratio thermometry[C]. Proc.OFS 3, San Diego, 1985. Postdeadline paper PDS-3
[11] [11] A. H. Hartog, A. P. Leach. M. P. Gdd. Distributed temperature sensing in solid-core fibers[J]. Electron. Lett., 1985, 21(23): 1061~1062
[12] [12] J. P. Dakin. D. J. Pratt, G. W. Bibby et al.. Distributed optical fibre Raman temperature sensor using a semiconductor light source and dector[J]. Electron. Lett., 1985, 21(13): 569~570
[13] [13] J. P. Dakin, D. J. Pratt, G. W. Bibby. Temperature distribution measurement using Raman ratio thermometry[C]. SPIE, 1985, 566: 249~253
[14] [14] G. P. Lees, A. P. Leach, A. H. Hartog et al.. 1.64 μm pulsed source for a distributed optical fibre Raman temperature sensor[J]. Electron. Lett., 1996, 32 (19): 1809~1810
[15] [15] P. C. Wait, K. De Souza, T. P. Newson. A theoretical comparison of spontaneous Raman and Brillouin based fibre optic distributed temperature sensors[J]. Opt. Commun., 1997, 144(1-3): 17~23
[16] [16] Huai Hoo Kee, G. P. Lees, T. P. Newson. 1.65 μm Raman-based distributed temperature sensor[J]. Electron. Lett., 1999, 35(21): 1869~1870
[17] [17] Y. T. Cho, M. Alahbabi, M. J. Gunning et al.. 50-km single-ended spontaneous-Brillouin-based distributed-temperature sensor exploiting pulsed Raman amplification[J]. Opt. Lett., 2003, 28(18): 1651~1653
[18] [18] Y. T. Cho, M. N. Alahbabi, M. J. Gunning et al.. Enhanced performance of long range Brillouin intensity based temperature sensors using remote Raman amplification[J]. Meas. Sci. Technol., 2004, 15: 1548~1552
[19] [19] Mohamed N. Alahbabi, Yuh T. Cho, Trevor P. Newson. 100 km distributed temperature sensor based on coherent detection of spontaneous Brillouin backscatter[J]. Meas. Sci. Technol., 2004, 15: 1544~1547
[20] [20] Y. T. Cho, M. N. Alahbabi, G. Brambilla et al.. Remote amplification in long range distributed Brillouin based temperature sensors[C]. SPIE, 2005, 5855: 72~75
[21] [21] M. N. Alahbabi, Y. T. Cho, T. P. Newson. Simultaneous temperature and strain measurement with combined spontaneous Raman and Brillouin scattering[J]. Opt. Lett., 2005, 30(11): 1276~1278
[22] [22] Mohamed N. Alahbabi, Yuh T. Cho, Trevor P. Newson. 150-km-range distributed temperature sensor based on coherent detection of spontaneous Brillouin backscatter and in-line Raman amplification[J]. J. Opt. Soc. Am. B, 2005, 22(6): 1321~1324
[23] [23] Mohamed N. Alahbabi, Yuh Tat Cho, Trevor P. Newson. Long-range distributed temperature and strain optical fibre sensor based on the coherent detection of spontaneous Brillouin scattering with in-line Raman amplification[J]. Meas. Sci. Technol., 2006, 17(5): 1082~1090
[24] [24] Mohammad Belal, Yuh Tat Cho, Morten Ibsen et al.. A temperature-compensated high spatial resolution distributed strain sensor[J]. Meas. Sci. Technol., 2010, 21 (1): 015204
[25] [25] M. A. Soto, P. K. Sahu, S. Faralli et al.. Distributed temperature sensor system based on Raman scattering using correlation-codes[J]. Electron. Lett., 2007, 43(16): 862~864
[26] [26] Marcelo A. Soto, Gabriele Bolognini, Fabrizio Di Pasquale et al.. Simplex-coded BOTDA fiber sensor with 1 m spatial resolution over a 50 km range[J]. Opt. Lett., 2007, 35(2): 259~261
[27] [27] Gabriele Bolognini, Jonghan Park, Marcelo A. Soto et al.. Analysis of distributed temperature sensing based on Raman scattering using OTDR coding and discrete Raman amplification[J]. Meas. Sci. Technol., 2007, 18(10): 3211~3218
[28] [28] M. A. Soto, P. K. Sahub, S. Faralli et al.. High performance and highly reliable Raman-based distributed temperature sensors based on correlation-coded OTDR and multimode graded-index fibers[C]. SPIE, 2007, 6619: 66193B
[29] [29] Gabriele Bolognini, M. A. Soto, Fabrizio Di Pasquale. Fiber-optic distributed sensor based on hybrid Raman and Brillouin scattering employing multiwavelength Fabry-Pérot lasers[J]. IEEE Photon. Technol. Lett., 2009, 21(20): 1523~1525
[30] [30] M. A. Soto. Gabriele Bolognini, Fabrizio Di Pasquale. Use of Fabry-Pérot lasers for simultaneous distributed strain and temperature sensing based on hybrid Raman and Brillouin scattering [C]. SPIE, 2009, 7503: 750328
[31] [31] Kwang Suh, Chung Lee. Auto-correction method for differential attenuation in a fiber-optic distributed-temperature sensor [J]. Opt. Lett., 2008, 33(16): 1845~1847
[32] [32] Kwang Suh, Chung Lee, Michael Sanders et al.. Active plug & play distributed Raman temperature sensing [C]. SPIE, 2008, 7004: 700435
[33] [33] Kellie Brown, Anthony W. Brown, Bruce G. Colpitts. Combined Raman and Brillouin scattering sensor for simultaneous high-resolution measurement of temperature and strain [C]. SPIE, 2006, 6167: 616716
[34] [34] Yongkang Dong, Xiaoyi Bao, Wenhai Li. Fiber differential Brillouin gain for improving the temperature accuracy and spatial resolution in a long-distance distributed fiber sensor [J]. Appl. Opt., 2009, 48(22): 4297~4301
[35] [35] Huang Shanglian, Liang Dawei, Liu Gong et al.. The research of distributed optical fiber temperature sensor system [J]. Chinese J. Scientific Instrument, 1991, 12(4): 359~364
[37] [37] Zhang Zaixuan, Wang Kequan, Insoo S. Kim et al.. Distributed optical fiber temperature sensor (DOFTS) system applied to temperature automatically alarm of coal-mine and tunnel [C]. SPIE, 2000, 4047: 128~132
[38] [38] Zhang Zaixuan, Wang Jianfeng, Feng Haiqi et al.. Measurement of performance characters of a 10 km LD distributed optical fiber temperature sensor(LDOFTS) system [C]. SPIE, 2000, 4220: 245~249
[39] [39] Zhang Zaixuan, Wang Jianfeng, Feng Haiqi et al.. Sampling correct technology of distributed optical fiber temperature sensor (DOFTS) system [C]. SPIE, 2000, 4220: 250~254
[40] [40] Zhang Zaixuan, Guo Ning, Yu Xiangdong et al.. Distributed fiber optics Raman high temperature (1000 ℃) measuring networks [C]. SPIE, 2001, 4603: 116~120
[41] [41] Liu Honglin, Zhuang Songlin, Zhang Zaixuan et al.. The dynamic base matching method to increase the stability of distributed optical fiber temperature sensors [C]. SPIE, 2002, 4920: 295~298
[42] [42] Zhang Zaixuan, Liu Honglin, Guo Ning et al.. The optimum designs of 30 km distributed optical fber Raman photons temperature sensors and measurement network [C]. SPIE, 2002, 4920: 268~279
[43] [43] Zhang Zaixuan, Liu Honglin, Guo Ning et al.. 30 km distributed optical fiber Raman photons temperature lidar [C]. SPIE, 2003, 4893: 78~82
[44] [44] Zaixuan Zhang, Honglin Liu, Jianfeng Wang et al.. Optimum design of 30 km long-distance distributed optical fiber Raman temperature sensor system (invited paper) [C]. SPIE, 2004, 5634: 182~190
[45] [45] Song Muping, Tang Weizhong, Zhou Wen. Theoretical analysis of high spatial resolution of distributed optical fiber sensors [J]. Optical Communication Technology, 1999, 23(1): 64~69
[47] [47] Zhao Hongzhi, Li Naiji, Zhao Dazun. Research of distributed optical fiber temperature sensor based on backward Raman scattering [J]. Instrument Technique and Sensor, 1996, (5): 7~13
[48] [48] Guo Bing, Mu Zhihua, Jiang Mingshun et al.. Design of a single-mode fiber distributed Raman temperature sensor system [J]. Study on Optical Communication, 2009, (4): 47~49,63
[49] [49] Liu Jiansheng, Li Zheng, Zhang Qishan. Research progress of full distributed optical fiber temperature sensor [J]. Electornic Science and Technology Review, 1999, (3): 10~13
[53] [53] Zaixuan Zhang, Bizhi Dai, Xiaolai Li et al.. Experimental study of Raman amplification on stimulated Brillouin scattering in the G652 fibers at 1520 nm [C]. SPIE, 2006, 6027: 602742
[55] [55] Zhang Zaixuan, Gong Huaping. Ultra-long distance distributed optical fiber Raman and Brillouin photons sensor: China, 200710156868[P]. 2008-04-16
[56] [56] Zhang Zaixuan, Zhang Shuqin. New type optical fiber Brillouin optics domain analyzer(BOTDA): China, 200810063711[P]. 2008-12-17
[57] [57] Zhang Zaixuan, Wang Jianfeng. Ultra long distance distributed optical fiber Raman photon temperature sensor integrated a Raman amplifier: China, 20072019219[P]. 2008-08-27
[58] [58] Zhang Zaixuan, Jin Shangzhong, Wang Jianfeng et al.. New type distributed optical fiber Raman, Brillouin scattering sensors: China, 201010145895.x[P]. 2010
[59] [59] Zhang Zaixuan. Full distributed Rayleigh and Raman scattering photons stress and temperature sensor: China, 200910099463 [P]. 2010-03-03
[60] [60] Zhang Zaixuan. Auto-correction distributed fiber Raman temperature sensor based on Raman-relation dual wavelength sourse: China, 200910102201[P]. 2010-02-03
[61] [61] Zhang Zaixuan, Wang Jianfeng, Zhang Wensheng et al.. Dispersion and loss spectra of a new type auto-correction distributed optical fiber Raman temperature sensor: China,201010145912.x[P]. 2010
[62] [62] Yu Xiangdong, Zhang Zaixuan, Zhang Wensheng. Distributed optical fiber Raman temperature sensor used serious pulse code and decode optical source: China, 201010169596.x[P]. 2010
[66] [66] Chung E. Lee, Kent Kalar, Michael E. Sanders. Methods and apparatus for dual source calibration for distributed temperature systems[P].US, 2007/0223556 A1, 2007-09-27
[67] [67] Jonghan Park, Gabriele Bolagnini, Duckey Lee et al.. Raman-based distributed temperature sensor with simplex coding and link optimization[J]. IEEE Photon. Technol. Lett., 2008, 18(17): 1879~1881
[68] [68] The《Optical fiber sensing》Reference material supplied by YOKOGAWA International Trade Ltd, Shanghai
Get Citation
Copy Citation Text
Zhang Zaixuan, Jin Shangzhong, Wang Jianfeng, Liu Honglin, Sun Zhongzhou, Gong Huaping, Yu Xiangdong, Zhang Wensheng. Distributed Optical Fiber Raman Photon Sensor Research Review[J]. Chinese Journal of Lasers, 2010, 37(11): 2749
Category: reviews
Received: Mar. 18, 2010
Accepted: --
Published Online: Nov. 16, 2010
The Author Email: Zhang Zaixuan (zhangzx@mail.hz.zj.cn)