A numerical investigation into the influence of langevin noise on vibration measurement using self-mixing laser diode

被引:0
|
作者
Bavogui, Javril [1 ]
Niwayama, Masatsuga [1 ]
Shinohara, Shigenobu [1 ]
机构
[1] Shizuoka Univ, Grad Sch Elect Sci & Technol, 3-5-1 JohoKu, Hamamatsu, Shizuoka 4328561, Japan
来源
2006 SICE-ICASE INTERNATIONAL JOINT CONFERENCE, VOLS 1-13 | 2006年
关键词
langevin noise; vibrating target; semiconductor laser;
D O I
暂无
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
We report on the influence of intrinsic noise on the self-mixing signal associated with a vibrating target. The signal intensity of a semiconductor laser is investigated using a numerical simulation based on the rate equations incorporating Langevin noise forces. The photon density (signal intensity) as a function of the target displacement was calculated for the spontaneous emission factor beta =10(-6) similar to 10(-4). The reconstructed displacement waveform was obtained from the sawtooth signal caused by the self-mixing effect between the backscattered fight from the target and the light in the laser diode. The influence of the noise on the displacement waveform of the vibrating target as a function of the feedback amplitude reflectivity r. and the spontaneous emission factor beta was shown. While the Langevin noise is greatly affect by beta and the photon density was found to be more stable when beta is less than 10(-6), we found that the amplitudes of the reconstructed waveform with different beta values are close to the true value of the target displacement amplitude (7.8 mu m peak to peak) when r(ext) = 0.5% similar to 1.2%. The variation coefficient in the case of r(ext) = 0.5% similar to 1.2% remained below 7%. These results are potentially useful for precise displacement measurement.
引用
收藏
页码:5998 / +
页数:2
相关论文
共 25 条
  • [11] Self-mixing diode laser interferometry for velocity measurements of different targets
    Alexandrova, Alexandra S.
    Tzoganis, Vasilis
    Welsch, Carsten P.
    OPTICAL SENSING AND DETECTION III, 2014, 9141
  • [12] Features of a Self-Mixing Laser Diode Operating Near Relaxation Oscillation
    Liu, Bin
    Yu, Yanguang
    Xi, Jiangtao
    Fan, Yuanlong
    Guo, Qinghua
    Tong, Jun
    Lewis, Roger A.
    SENSORS, 2016, 16 (09)
  • [13] Vibration measurement based on multiple Hilbert transform for self-mixing interferometry
    Zhang, Zihua
    Li, Chengwei
    Huang, Zhen
    OPTICS COMMUNICATIONS, 2019, 436 : 192 - 196
  • [14] Autocorrelation of self-mixing speckle in an EDFR laser and velocity measurement
    Han, D.
    Chen, S.
    Ma, L.
    APPLIED PHYSICS B-LASERS AND OPTICS, 2011, 103 (03): : 695 - 700
  • [15] Acceleration measurement by spectrum of interference signal of self-mixing laser
    Skripal, An. V.
    Dobdin, S. Yu.
    Dzhafarov, A. V.
    Sadchikova, K. A.
    SARATOV FALL MEETING 2019: LASER PHYSICS, PHOTONIC TECHNOLOGIES, AND MOLECULAR MODELING, 2020, 11458
  • [16] SELF-MIXING INTERFEROMETRY FOR DISTANCE MEASUREMENT USING A SEMICONDUCTOR LASER WITH CURRENT-MODULATED WAVELENGTH
    Usanov, D. A.
    Skripal, A. V.
    Astakhov, E. I.
    Kostuchenko, I. S.
    Dobdin, S. Yu.
    COMPUTER OPTICS, 2018, 42 (01) : 54 - 59
  • [17] Measurement of microsurface topography using a self-mixing optical configuration
    Sun, Xiaohong
    Wang, Han
    Liu, Bin
    Yu, Yanguang
    OPTICAL ENGINEERING, 2018, 57 (05)
  • [18] Improve Sensitivity for a Self-Mixing Laser Diode Sensor by Applying a Pre-feedback
    Ruan, Yuxi
    Liu, Bin
    Xi, Jiangtao
    Guo, Qinghua
    Tong, Jun
    Yu, Yanguang
    SENSORS AND ELECTRONIC INSTRUMENTATION ADVANCES (SEIA'2018), 2018, : 113 - 117
  • [19] Self-mixing laser diode included in scanning microwave microscope to the control of probe nanodisplacement
    Usanov, D. A.
    Skripal, A., V
    Astakhov, E., I
    Dobdin, S. Y.
    SARATOV FALL MEETING 2017: LASER PHYSICS AND PHOTONICS XVIII; AND COMPUTATIONAL BIOPHYSICS AND ANALYSIS OF BIOMEDICAL DATA IV, 2018, 10717
  • [20] Multiple self-mixing interferometry based on lock-in amplifier analysis for vibration measurement
    Zhang, Zihua
    Wang, Fuli
    Yuan, Tao
    Li, Chengwei
    OPTICAL REVIEW, 2020, 27 (04) : 313 - 320