EI / SCOPUS / CSCD 收录

中文核心期刊

HU Yongming, MENG Zhou, XIONG Shuidong, LIU Yang, ZHANG Xueliang, FEI Guoqiang, WANG Zhaoxia. Development of interferometric all polarization maintaining fiber hydrophone array[J]. ACTA ACUSTICA, 2003, 28(2): 155-158. DOI: 10.15949/j.cnki.0371-0025.2003.02.012
Citation: HU Yongming, MENG Zhou, XIONG Shuidong, LIU Yang, ZHANG Xueliang, FEI Guoqiang, WANG Zhaoxia. Development of interferometric all polarization maintaining fiber hydrophone array[J]. ACTA ACUSTICA, 2003, 28(2): 155-158. DOI: 10.15949/j.cnki.0371-0025.2003.02.012

Development of interferometric all polarization maintaining fiber hydrophone array

More Information
  • PACS: 
  • Received Date: June 03, 2001
  • Revised Date: August 26, 2001
  • Available Online: August 03, 2022
  • The research results of interferometric all polarization maintaining fiber hydrophone array have been reported. On the basis of detail introduction of structure and performances of all polarization maintaining fiber hydrophone element, the structure and characteristics of four element array have been described. The measurement results of frequency responses of array element relative receiving sensitivity and array directional responses have been given. At the meantime, the differences in performances, signal transmission and processing and other aspects between optic fiber hydrophone and traditional piezoelectric transducer have been given.
  • Related Articles

    [1]HU Xinyu, YUE Yan, WANG Haibo, CAI Chen, QI Zhimei. Acoustic detection test based on a Fabry-Perot interferometric fiber-optic infrasound sensor mounted on an aerostat[J]. ACTA ACUSTICA, 2025, 50(2): 412-422. DOI: 10.12395/0371-0025.2023242
    [2]CHEN Yi, LIU Fei, TONG Haoyang, LI Wenjing, JIN Xiaofeng, XU Ping. A three-dimensional optical fiber vector hydrophone based on optical fiber accelerometers with integrated structural design[J]. ACTA ACUSTICA, 2025, 50(1): 157-164. DOI: 10.12395/0371-0025.2023161
    [3]CHEN Yu, MENG Zhou, MA Shuqing, BAO Zhangchun. High-resolution azimuth estimation algorithm based on data fusion for the vector hydrophone vertical array[J]. ACTA ACUSTICA, 2015, 40(6): 807-815. DOI: 10.15949/j.cnki.0371-0025.2015.06.006
    [4]WANG Junjie, JIANG Desheng, XIE Guanmo, LIANG Yufei, HUANG Junbin. Research of the planar optical fiber bragg grating hydrophone probe with acceleration compensation methods[J]. ACTA ACUSTICA, 2009, 34(4): 311-317. DOI: 10.15949/j.cnki.0371-0025.2009.04.007
    [5]LI Zhizhong, CHENG Yusheng, HU Yongming, NI Ming. Research on a passive fiber grating hydrophone based on polymer side-hole package structure[J]. ACTA ACUSTICA, 2008, 33(5): 469-474. DOI: 10.15949/j.cnki.0371-0025.2008.05.015
    [6]WANG Junjie, JIANG Desheng, XIE Guanmo, LIANG Yufei, HUANG Junbin. Research of the planar optical fiber Bragg grating hydrophone probe[J]. ACTA ACUSTICA, 2007, 32(4): 343-348. DOI: 10.15949/j.cnki.0371-0025.2007.04.010
    [7]NI Ming, LI Xiulin, ZHANG Renhe, HU Yongming, MENG Zhou, XIONG Shuidong, LIU Yang. Seatests of an all-optical fiber-optic hydrophone system[J]. ACTA ACUSTICA, 2004, 29(6): 539-543. DOI: 10.15949/j.cnki.0371-0025.2004.06.009
    [8]CAO Jia-nian, LI Xu-you, WANG Zhao-xia, LUO Ji-cheng, FU Lin-tai. Research on fiber-optic interferometric hydrophone array using frequency division multiplexing technique[J]. ACTA ACUSTICA, 2001, 26(3): 222-226. DOI: 10.15949/j.cnki.0371-0025.2001.03.006
    [9]ZHOU Fuhong, WANG Zhiyuan, WANG Wenzhi. The behavior of the single mode optic-fiber resonat cavity hydrophone[J]. ACTA ACUSTICA, 1998, 23(4): 357-366. DOI: 10.15949/j.cnki.0371-0025.1998.04.010
    [10]ZHOU Fuhong, CUI Sanlie, ZHANG Shuquan. The behavior of the signal mode fiber-optic hydrophone with water-proof coating and carried Phase on compensator[J]. ACTA ACUSTICA, 1995, 20(3): 206-210. DOI: 10.15949/j.cnki.0371-0025.1995.03.007

Catalog

    Article Metrics

    Article views (42) PDF downloads (8) Cited by()
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return