• Infrared and Laser Engineering
  • Vol. 53, Issue 7, 20240132 (2024)
Zhongze XIAN1,2, Jingtao XIN1,2,3, Qihui LI1,2, Xiang TANG1,2, and Mingli DONG1,2,3
Author Affiliations
  • 1Key Laboratory of Optoelectronic Testing Technology and Instrumentation, Ministry of Education, Beijing University of Information Science and Technology, Beijing 100192, China
  • 2Beijing Laboratory of Optical Fiber Sensing and Systems, Beijing University of Information Science and Technology, Beijing 100016, China
  • 3Guangzhou Nansha Institute of Photonic Sensing Technology, Guangzhou 511462, China
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    DOI: 10.3788/IRLA20240132 Cite this Article
    Zhongze XIAN, Jingtao XIN, Qihui LI, Xiang TANG, Mingli DONG. Wide-band high-sensitivity fiber Bragg grating vibration sensor based with hinged complementary structure[J]. Infrared and Laser Engineering, 2024, 53(7): 20240132 Copy Citation Text show less
    References

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    [3] Jingyi LI, Zhenhua ZHU. Application and development of fiber grating sensing technology in aerospace. China New Telecommunication, 20, 67-69(2018).

    [4] H Q ZHANG, T LIU, J Y LU et al. Static and ultrasonic structural health monitoring of full-size aerospace multi-function capsule using FBG strain arrays and PSFBG acoustic emission sensors. Optical Fiber Technology, 78, 103316(2023).

    [5] X YANG, X G LII, D J MENG et al. Optical fiber vibration sensor for bearing fault detection based on Sagnac interferometer. Laser Physics, 33, 065101(2023).

    [6] Haozhou ZUO, Fenfen YAN, Zhitao GAO et al. Research on the application of fiber grating technology in acceleration sensor. Industrial Instrumentation and Automation, 23-28(2021).

    [7] X D LUO, Y F LI, D Q FENG et al. Fiber Bragg grating accelerometer based on symmetrical double flexure hinges. Optical Fiber Technology, 68, 102795(2022).

    [8] H D LE, C C CHIANG, C N NGUYEN et al. Design and optimization of medium-high frequency FBG acceleration sensor based on symmetry flexible hinge structure. Optical Fiber Technology, 78, 103308(2023).

    [9] Xiang TANG, Jun WU, Qihui LI et al. Research on miniature three-axis vibration sensor based on FBG. Infared and Laser Engineering, 53, 20230518(2024).

    [10] O M PARIDA, J THOMAS, J NAYAK et al. Double-L cantilever-based fiber Bragg grating accelerometer. IEEE Sensors Journal, 19, 11247-11254(2019).

    [11] Zhenan JIA, Xianfeng ZHAO, Kaiqing YANG et al. Fiber Bragg grating vibration sensor based on 'E' beam structure. Journal of Optoelectronics · Laser, 31, 1239-1244(2020).

    [12] Wei FAN, Dequan FENG, Xueguang QIAO. Low-frequency fiber Bragg grating accelerometer based on diaphragm-type cantilever beam(Invited). Acta Photonica Sinica, 51, 1006004(2022).

    [13] Z C QIU, K SU, J Q ZHANG et al. A miniaturized low-frequency FBG accelerometer based on symmetrical cantilever beam. IEEE Sensors Journal, 23, 5831-5840(2023).

    [14] T V NGUYEN, H D LE, H C HSU et al. An optical fiber acceleration sensor based on a V-Shaped flexure hinge structure. IEEE Sensors Journal, 23, 15586-15596(2023).

    [15] H D LI, X ZHANG, R ZHUO et al. Low frequency fiber optic accelerometer based on lever amplification structure. Optical Fiber Technology, 80, 103434(2023).

    [16] Lei LIANG, Yanpu CAI, Yutang DAI et al. A fiber Bragg grating acceleration sensor based on single elliptical hinge. Journal of Optoelectronics · Laser, 30, 234-240(2019).

    [17] Lei LIANG, Zhenhua ZHU, Meige LI et al. Design of flexible hinge acceleration sensor based on double fiber Bragg grating. Instrument Technique and Sensor, 1-4, 9(2020).

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    Zhongze XIAN, Jingtao XIN, Qihui LI, Xiang TANG, Mingli DONG. Wide-band high-sensitivity fiber Bragg grating vibration sensor based with hinged complementary structure[J]. Infrared and Laser Engineering, 2024, 53(7): 20240132
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