• DocumentCode
    1760799
  • Title

    Radon-Linear Canonical Ambiguity Function-Based Detection and Estimation Method for Marine Target With Micromotion

  • Author

    Xiaolong Chen ; Jian Guan ; Yong Huang ; Ningbo Liu ; You He

  • Author_Institution
    Dept. of Electron. & Inf. Eng., Naval Aeronaut. & Astronaut. Univ., Yantai, China
  • Volume
    53
  • Issue
    4
  • fYear
    2015
  • fDate
    42095
  • Firstpage
    2225
  • Lastpage
    2240
  • Abstract
    Robust and effective detection of a marine target is a challenging task due to the complex sea environment and target´s motion. A long-time coherent integration technique is one of the most useful methods for the improvement of radar detection ability, whereas it would easily run into the across range unit (ARU) and Doppler frequency migration (DFM) effects resulting distributed energy in the time and frequency domain. In this paper, the micro-Doppler (m-D) signature of a marine target is employed for detection and modeled as a quadratic frequency-modulated signal. Furthermore, a novel long-time coherent integration method, i.e., Radon-linear canonical ambiguity function (RLCAF), is proposed to detect and estimate the m-D signal without the ARU and DFM effects. The observation values of a micromotion target are first extracted by searching along the moving trajectory. Then these values are carried out with the long-time instantaneous autocorrelation function for reduction of the signal order, and well matched and accumulated in the RLCAF domain using extra three degrees of freedom. It can be verified that the proposed RLCAF can be regarded as a generalization of the popular ambiguity function, fractional Fourier transform, fractional ambiguity function, and Radon-linear canonical transform. Experiments with simulated and real radar data sets indicate that the RLCAF can achieve higher integration gain and detection probability of a marine target in a low signal-to-clutter ratio environment.
  • Keywords
    Doppler radar; Fourier transforms; Radon transforms; correlation methods; feature extraction; motion compensation; motion estimation; radar detection; radar tracking; search radar; target tracking; ARU; DFM; Doppler frequency migration; RLCAF; Radon-linear canonical ambiguity function; Radon-linear canonical transform; across range unit; autocorrelation function; coherent integration technique; detection method; detection probability; distributed energy; estimation method; fractional Fourier transform; fractional ambiguity function; frequency domain; m-D signature; marine target; microDoppler signature; micromotion target; moving trajectory; quadratic frequency-modulated signal; radar data sets; radar detection; sea environment; signal-to-clutter ratio environment; time domain; Acceleration; Clutter; Doppler effect; Doppler radar; Frequency modulation; Transforms; Long-time coherent integration; Radon-linear canonical ambiguity function (RLCAF); marine target; micro-Doppler (m-D); quadratic frequency-modulated (QFM) signal;
  • fLanguage
    English
  • Journal_Title
    Geoscience and Remote Sensing, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0196-2892
  • Type

    jour

  • DOI
    10.1109/TGRS.2014.2358456
  • Filename
    6915876