Maximum-likelihood estimation for frequency-modulated continuous-wave laser ranging using photon-counting detectors

被引:9
|
作者
Erkmen, Baris I. [1 ]
Barber, Zeb W. [2 ]
Dahl, Jason [2 ]
机构
[1] CALTECH, Jet Prop Lab, Pasadena, CA 91109 USA
[2] Montana State Univ, Spectrum Lab, Bozeman, MT 59717 USA
基金
美国国家航空航天局;
关键词
HETERODYNE-DETECTION; PERFORMANCE; RADAR; LADAR;
D O I
10.1364/AO.52.002008
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
We analyze the minimum achievable mean-square error in frequency-modulated continuous-wave range estimation of a single stationary target when photon-counting detectors are employed. Starting from the probability density function for the photon-arrival times in photodetectors with subunity quantum efficiency, dark counts, and dead time, we derive the Cramer-Rao bound and highlight three important asymptotic regimes. We then derive the maximum-likelihood (ML) estimator for arbitrary frequency modulation. Simulation of the ML estimator shows that its performance approaches the standard quantum limit only when the mean received photons are between two thresholds. We provide analytic approximations to these thresholds for linear frequency modulation. We also compare the ML estimator's performance to conventional Fourier transform (FT) frequency estimation, showing that they are equivalent if the reference arm is much stronger than the target return, but that when the reference field is weak the FT estimator is suboptimal by approximately a factor of root 2 in root-mean-square error. Finally, we report on a proof-of-concept experiment in which the ML estimator achieves this theoretically predicted improvement over the FT estimator. (C) 2013 Optical Society of America
引用
收藏
页码:2008 / 2018
页数:11
相关论文
共 50 条
  • [41] Singlemode fibre frequency-modulated continuous-wave Sagnac gyroscope
    Zheng, J
    ELECTRONICS LETTERS, 2004, 40 (20) : 1255 - 1257
  • [42] Coherence analysis of optical frequency-modulated continuous-wave interference
    Zheng, Jesse
    APPLIED OPTICS, 2006, 45 (16) : 3681 - 3687
  • [43] Frequency-modulated Continuous-wave LIDAR Module in Silicon Photonics
    Poulton, Christopher V.
    Cole, David B.
    Yaacobi, Ami
    Watts, Michael R.
    2016 OPTICAL FIBER COMMUNICATIONS CONFERENCE AND EXHIBITION (OFC), 2016,
  • [44] Comb-calibrated Frequency-modulated Continuous-wave Lidar
    Xie, Yang
    Zhang, Tieli
    Wang, Zongjun
    Liu, Lin
    Liu, Hao
    Gao, Xiaoqiang
    Ge, Meng
    Zhang, Fumin
    2020 IEEE 7TH INTERNATIONAL WORKSHOP ON METROLOGY FOR AEROSPACE (METROAEROSPACE), 2020, : 372 - 376
  • [45] Birefringent fibre frequency-modulated continuous-wave Sagnac gyroscope
    Zheng, J
    ELECTRONICS LETTERS, 2004, 40 (24) : 1520 - 1522
  • [46] Distance measurement using frequency-modulated continuous-wave ladar with calibration by a femtosecond frequency comb
    Liu, Yang
    Yang, Linghui
    Lin, Jiarui
    Zhu, Jigui
    2017 INTERNATIONAL CONFERENCE ON OPTICAL INSTRUMENTS AND TECHNOLOGY - OPTOELECTRONIC MEASUREMENT TECHNOLOGY AND SYSTEMS, 2017, 10621
  • [47] Ultrafast millimeter-wave frequency-modulated continuous-wave reflectometry for NSTX
    Kubota, S.
    Peebles, W. A.
    Nguyen, X. V.
    Crocker, N. A.
    Roquemore, A. L.
    REVIEW OF SCIENTIFIC INSTRUMENTS, 2006, 77 (10):
  • [48] Time delay estimation of linear frequency-modulated continuous-wave lidar signals via SESTH
    Li X.-M.
    Wang C.-Y.
    Liu X.-L.
    Xie D.
    Jilin Daxue Xuebao (Gongxueban)/Journal of Jilin University (Engineering and Technology Edition), 2022, 52 (04): : 950 - 958
  • [49] Coherence enhancement of a chirped DFB laser for frequency-modulated continuous-wave reflectometry using a composite feedback loop
    Qin, Jie
    Zhou, Qian
    Xie, Weilin
    Xu, Yan
    Yu, Shengguo
    Liu, Zhangweiyi
    Tong, Yi Tian
    Dong, Yi
    Hu, Weisheng
    OPTICS LETTERS, 2015, 40 (19) : 4500 - 4503
  • [50] High-precision optical fiber pressure sensor using frequency-modulated continuous-wave laser interference
    Bai, Lang
    Zheng, Gang
    Sun, Bin
    Zhang, Xiongxing
    Sheng, Qiming
    Han, Yuan
    AIP ADVANCES, 2021, 11 (02)