• Photonic Sensors
  • Vol. 7, Issue 3, 234 (2017)
Qianyu REN1、2, Junhong LI3, Yingping HONG1、2, Pinggang JIA1, and Jijun XIONG1、2、*
Author Affiliations
  • 1Science and Technology on Electronic Test & Measurement Laboratory, North University of China, Taiyuan, 030051, China
  • 2Key Laboratory Instrumentation Science & Dynamic Measurement, Ministry of Education, North University of China, Taiyuan, 030051, China
  • 3Department of Automation, Shanxi University, 030006, China
  • show less
    DOI: 10.1007/s13320-017-0409-1 Cite this Article
    Qianyu REN, Junhong LI, Yingping HONG, Pinggang JIA, Jijun XIONG. An Arc Tangent Function Demodulation Method of Fiber-Optic Fabry-Perot High-Temperature Pressure Sensor[J]. Photonic Sensors, 2017, 7(3): 234 Copy Citation Text show less
    References

    [1] T. George, K. A. Son, R. A. Powers, L. Y. D. Castillo, and R. Okojie, “Harsh environment microtechnologies for NASA and terrestrial applications,” in Proceeding of IEEE 4th International Conference on Sensors, Irvine, CA, USA, 2005, pp. 1253–1258.

    [2] G. C. Fang, P. G. Jia, T. Liang, Q. L. Tan, Y. P. hong, W. Y. Liu, et al., “Diaphragm-free fiber-optic Fabry-Perot interferometer based on tapered hollow silica tube,” Optics Communications, 2016, 371: 201–205.

    [3] Z. H. Yu and A. B. Wang, “Fast demodulation algorithm for multiplexed low-finesse Fabry-Perot interferometers,” Journal of Lightwave Technology, 2016, 34(3): 1015–1019.

    [4] J. F. Jiang, T. G. Liu, Y. M. Zhang, L. N. Liu, Y. Zha, F. Zhang, et al., “Development of a parallel demodulation system used for extrinsic Fabry-Perot interferometer and fiber Bragg grating sensors,” Applied Optics, 2006, 45(3): 528–535.

    [5] B. Wu, Y. Yuan, J. Yang, A. Zhao, and L. Yuan, “Improved signal demodulation method in optical fiber seismometer,” Sensor Letters, 2012, 10(7): 1402–1406.

    [6] W. R. Allan, Z. W. Graham, J. R. Zayas, D. P. Roach, and D. A. Horsley, “Multiplexed fiber Bragg grating interrogation system using a microelectromechanical Fabry-Perot tunable filter,” IEEE Sensors Journal, 2009, 9(8): 936–943.

    [7] Q. X. Yu and X. L. Zhou, “Pressure sensor based on the fiber-optic extrinsic Fabry-Perot interferometer,” Photonic Sensors, 2011, 1(1): 72–83.

    [8] M. Li, B. Tong, N. Arsad, and J. J. Guo, “A double-fiber Fabry-Perot sensor based on modified fringe counting and direct phase demodulation,” Measurement Science & Technology, 2013, 24(9): 094012.

    [9] Y. F. Tao, M. Wang, D. M. Guo, X. Q. Ni, and H. Hao, “Nine-point phase demodulation for interferometric measurement,” Optik, 2016, 127(14): 5654–5662.

    [10] E. Lu, Z. L. Ran, F. Peng, Z. W. Liu, and F. G. Xu, “Demodulation of micro fiber-optic Fabry-Perot interferometer using subcarrier and dual-wavelength method,” Optics Communications, 2012, 285(6): 1087–1090.

    [11] K. Toge and F. Ito, “Recent research and development of optical fiber monitoring in communication systems,” Photonic Sensors, 2013, 3(4): 304–313.

    [12] J. H. Xie, F. Y. Wang, Y. Pan, J. J. Wang, Z. L. Hu, Y. M. Hu, “High resolution signal-processing method for extrinsic Fabry-Perot interferometric sensors,” Optical Fiber Technology, 2015, 22: 1–6.

    [13] N. Wang, Y. Zhu, T. C. Gong, L. H. Li, and W. M. Chen, “Multichannel fiber optic Fabry-Perot nonscanning correlation demodulator,” Chinese Optics Letters, 2013, 11(7): 10–12.

    [14] H. T. Chen and Y. C. Liang, “Analysis of the tunable asymmetric fiber F-P cavity for fiber sensor edge-filter demodulation,” in Proceeding of IEEE 2014 International Conference on Consumer Electronics, Shenzhen, 2014, pp. 338–343.

    [15] “Diaphragm based long cavity Fabry-Perot fiber acoustic sensor using phase generated carrier,” Optics Communications, 2017, 382: 514–518.

    [16] Y. Liu, L. W. Wang, C. D. Tian, M. Zhang, and Y. Liao, “Analysis and optimization of the PGC method in all digital demodulation systems,” Journal of Lighawave Technology, 2008, 26(17–20): 3225–3233.

    [17] Y. J. Wei and Z. H. Zhai, “Error analysis of dual wavelength quadrature phase demodulation for low-finesse Fabry-Perot cavity based fibre optic sensor,” Optik, 2011, 122(14): 1309–1311.

    [18] A. L. Zhang and S. Zhang, “High stability fiber-optics sensors with an improved PGC demodulation algorithm,” IEEE Sensors Journal, 2016, 16(21): 7681–7684.

    [19] S. C. Huang, Y. F. Huang, and F. H. Hwang, “An improved sensitivity normalization technique of PGC demodulation with low minimum phase detection sensitivity using laser modulation to generate carrier signal,” Sensors and Actuators A: Physical, 2013, 191: 1–10.

    Qianyu REN, Junhong LI, Yingping HONG, Pinggang JIA, Jijun XIONG. An Arc Tangent Function Demodulation Method of Fiber-Optic Fabry-Perot High-Temperature Pressure Sensor[J]. Photonic Sensors, 2017, 7(3): 234
    Download Citation