Chinese Journal of Lasers, Volume. 39, Issue s2, 214002(2012)

Nonlinear Response Characteristics of the Optical Frequency Modulated Lidar

Li Jiang1、*, Lin Zhili1, and Ma Jingjin2
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
  • show less
    References(17)

    [1] [1] M. Mokuno, I. Kawano, T. Suzuki. In-orbit demonstration of rendezvous laser radar for unmanned autonomous rendezvous docking[J]. IEEE Trans. Aerospace & Electron. Syst., 2004, 40(2): 617~625

    [2] [2] D. F. Pierrottet, F. Amzajerdian, L. Petway et al.. Flight test performance of a high precision navigation Doppler lidar[C]. SPIE, 2009, 7323: 732311

    [3] [3] R. Agishev, B. Gross, F. Moshary et al.. Range-resolved pulsed and CWFM lidars: potential capabilities comparison[J]. Appl. Phys. B-Lasers, Opt., 2006, 85(1): 149~162

    [4] [4] Song Jingwei. Linearity effects on the range resolution of LFM radar[J]. J. University of Electronic Science & Technology of China, 1992, 21(2): 121~126

    [5] [5] S. O. Piper. Homodyne FMCW radar range resolution effects with sinusoidal nonlinearities in the frequency sweep[C]. Atlanta: IEEE International Conference on Radar, 1993. 563~567

    [6] [6] Hu Xiang, Ruan Wenjie, Wang Dongjin. Analysis of the influence on the range resolution of the nonlinearity in LFMCW radar[J]. Modern Radar, 1999, 21(5): 26~30

    [7] [7] Huang Rui, Lü Haibao, Chu Xingchun et al.. The characteristic analyzing of frequency-modulated semiconductor laser diode used in FMCW measuring system[J]. Laser Journal, 1998, 19(1): 22~26

    [8] [8] J. K. Christer, A. A. O. Fredrik. Linearization of the frequency sweep of a frequency modulated continuous-wave semiconductor laser radar and the resulting ranging performance[J]. Appl. Opt., 1999, 38(15): 3376~3386

    [9] [9] E. J. Kelly, I. S. Reed, W. L. Root. The detection of radar echoes in noise[J]. J. Soc. Industr. Appl. Math,, 1960, 8(2): 309~341

    [10] [10] E. J. Kelly. The radar measurement of range, velocity and acceleration[J]. IEEE Trans. Military Electron., 1961, MIL_5(2): 51~57

    [11] [11] S. H. Knowles, W. B. Waltman. Linear least squares determination of Doppler time derivative for NAVSPASUR-like signals[J]. IEEE Trans. Instrum. Meas., 1985, 34(1): 64~69

    [12] [12] P. M. Djuric, S. M. Kay. Parameter estimation of chirp signals[J]. IEEE Trans. Acoust. Speech Signal Process., 1990, 38(12): 2118~2126

    [13] [13] Zeng Zhaoyang, Zhang Xiaoyong, Jia Xin. Measurement of linear frequency-modulated continuous wave laser radar[J]. Laser & Optoelectronics Progress, 2011, 48(2): 022802

    [14] [14] A. Renaux, P. Forster, E. Chaumette et al.. On the high-SNR conditional maximum-likelihood estimator full statistical characterization[J]. IEEE Trans. Signal Process., 2006, 54(12): 1260~1272

    [15] [15] Yan Li, Hua Fu, Pooi Yuen Kam. Improved, approximate, time-domain ML estimators of chirp signal parameters and their performance analysis[J]. IEEE Trans. Signal Process., 2009, 57(4): 1260~1272

    [16] [16] S. Peley, B. Friedlander. The discrete polynomial-phase transform[J]. IEEE Trans. Signal Process., 1995, 43(8): 1901~1914

    [17] [17] S. Peley, B. Porat. Linear FM signal parameter estimation from discrete-time observations[J]. IEEE Trans. Aerospace & Electron. Syst., 1991, 27(4): 607~616

    Tools

    Get Citation

    Copy Citation Text

    Li Jiang, Lin Zhili, Ma Jingjin. Nonlinear Response Characteristics of the Optical Frequency Modulated Lidar[J]. Chinese Journal of Lasers, 2012, 39(s2): 214002

    Download Citation

    EndNote(RIS)BibTexPlain Text
    Save article for my favorites
    Paper Information

    Category: remote sensing and sensor

    Received: May. 20, 2012

    Accepted: --

    Published Online: Dec. 24, 2012

    The Author Email: Jiang Li (jiangleebuaa@163.com)

    DOI:10.3788/cjl201239.s214002

    Topics