• Acta Photonica Sinica
  • Vol. 45, Issue 7, 70701002 (2016)
ZHOU Zhi-rong1、2、*, HUA Deng-xin1, YANG Rong1, YAN Qing1, CHEN Hao1, and SONG Yue-hui1
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
  • show less
    DOI: 10.3788/gzxb20164507.0701002 Cite this Article
    ZHOU Zhi-rong, HUA Deng-xin, YANG Rong, YAN Qing, CHEN Hao, SONG Yue-hui. De-noising Method for Mie Scattering Lidar Echo Signal Based on Wavelet Theory[J]. Acta Photonica Sinica, 2016, 45(7): 70701002 Copy Citation Text show less
    References

    [1] LIU Jun. Study of the lidar techniques for remote sensing of the atmospheric temperature and aerosol profiles[D]. Xi'an: Xi'an University of Technology, 2008.

    [2] BU Ling-bing, YUAN Jing, GAO Ai-zhen, et al. Analysis of haze-fog events based on laser ceilometer [J]. Acta Photonica Sinica, 2014, 43(9): 0901002.

    [3] YAN Qing, HUANG Deng-xin, LI Shi-chun, et al. Observation and productization of the micro-pulsed Mie scattering lidar system[J]. Chinese Journal of Quantum Electronics 2013, 30(1): 123-128.

    [4] DONOHO BDL. De-noising by soft-tresholding[J].IEEE Transactions on Information Theory, 1995, 41(3):612-627.

    [5] XU Duo, SHEN Guo-qin, QIAN Zu-ping. Research on separation for mixed signals based on ensemble empirical mode decomposition [J]. Journal of Military Communications Technology, 2011, 32(2): 27-32.

    [6] ZHENG Fa-tai, HUA Deng-xin, ZHOU A-wei. Empirical mode decomposition algorithm research &application of Mie lidar atmospheric backscattering signal [J].Chinese Journal Lasers, 2009, 36(5): 1068-1074.

    [7] WANG Shu-tao, LI Mei-mei, LI Pan, et al. Signal processing method based on empirical mode decomposition in the SO2 concentration monitoring [J]. Acta Photonica Sinica , 2014, 43(2): 0228002.

    [8] CHEN Dong, WANG Jiang-an, KANG Sheng. Comparison of backscattering lidar signal denoising methods[J]. Ship Science and Technology, 2011, 33(4): 93-97.

    [9] FANG H T, HUANG D S. Noise reduction in lidar signal based on discrete wavelet transform [J]. Optics Communications, 2004, 233(s1-3):67-76.

    [10] PALETI R, KUMAR Y B, CHAITANYA T K. Wavelet transform method for deriving atmospheric boundary layer height from lidar signals [J]. International Journal of Engineering & Technology, 2013, 5(2): 1465-1472.

    [11] WERNER R, STEBEL K, HANSEN G H, et al. Application of wavelet transformation to determine wavelengths and phase velocities of gravity waves observed by lidar measurements [J]. Journal of Atmospheric and Solar-Terrestrial Physics, 2007, 69(17-18): 2249-2256.

    [12] WU Dong-mei. Signal estimation with multiresolution threshold using principle of SURE in wavelet basis[J].Journal of Xi'an University of Science and Technology, 2005, 25(3): 345-348.

    [13] YIN Ming, BAI Rui-feng, XIN Yan, et al. De-noising algorithm by non-sub-sampled dual-tree complex wavelet domain bivariate model[J]. Acta Photonica Sinica, 2014, 43(2): 1010004.

    [14] BROOKS I M. Finding boundary layer top: application of wavelet covariance transform to lidar backscatter profiles [J]. Journal of Atmospheric & Oceanic Technology, 2003, 20(8): 1092-1105.

    [15] ZHANG Gai-xia, ZHAO Yue-feng, ZHANG Yin-chao, et al. A lidar system for monitoring planetary boundary layer aerosol in daytime[J]. Acta Phsica Sinica, 2008, 57(11): 7390-7395.

    [16] ZHAO Song, JIANG Han-hong, ZHANG Chao-liang, et al. Radar signal denoising based on improved wavelet thresholding functions[J]. Ordnance Industry Automation, 2011, 30(7): 1-3.

    [17] MAO Jian-dong, HUA Deng-xin, WANG Yu-feng, et al. Noise reduction in lidar signal based on wavelet packet analysis[J]. Chinese Journal of Lasers, 2011, 38(2): 0209001.

    [18] QIN Ya-hui, FENG Jing-hui, CHEN Li-ding. Study of signal de-noising methods based on wavelet transform[J].Information Technolog, 2010, 01: 53-57.

    ZHOU Zhi-rong, HUA Deng-xin, YANG Rong, YAN Qing, CHEN Hao, SONG Yue-hui. De-noising Method for Mie Scattering Lidar Echo Signal Based on Wavelet Theory[J]. Acta Photonica Sinica, 2016, 45(7): 70701002
    Download Citation