• DocumentCode
    1954913
  • Title

    Radar matched filtering using the Fractional Fourier Transform

  • Author

    Elgamel, S.A. ; Clemente, C. ; Soraghan, J.J.

  • Author_Institution
    Dept. of Electron. & Electr. Eng., Univ. of Strathclyde, Glasgow, UK
  • fYear
    2010
  • fDate
    29-30 Sept. 2010
  • Firstpage
    1
  • Lastpage
    5
  • Abstract
    A matched filter is the optimal linear filter for maximizing the signal to noise ratio (SNR) in the presence of additive noise. Matched filters are commonly used in radar systems where the transmitted signal is known and may be used as a replica to be correlated with the received signal which can be carried out by multiplication in the frequency domain by applying Fourier Transform (FT). Fractional Fourier transform (FrFT) is the general case for the FT and is superior in chirp pulse compression using the optimum FrFT order. In this paper a matched filter is implemented for a chirp radar signal in the optimum FrFT domain. Mathematical formula for a received chirp signal in the frequency domain and a generalized formula in the fractional Fourier domain are presented in this paper using the Principle of Stationary Phase (PSP). These mathematical expressions are used to show the limitations of the matched filter in the fractional Fourier domain. The parameters that affect the chirp signal in the optimum fractional Fourier domain are described. The performance enhancement by using the matched filter in the fractional Fourier domain for special cases is presented.
  • Keywords
    Fourier transforms; frequency-domain analysis; matched filters; pulse compression; radar signal processing; PSP; SNR maximization; additive noise; chirp pulse compression; chirp radar signal; fractional Fourier transform; frequency domain; optimal linear filter; optimum FrFT order; optimum fractional Fourier domain; principle-of-stationary phase; radar matched filtering; signal-to-noise ratio;
  • fLanguage
    English
  • Publisher
    iet
  • Conference_Titel
    Sensor Signal Processing for Defence (SSPD 2010)
  • Conference_Location
    London
  • Type

    conf

  • DOI
    10.1049/ic.2010.0242
  • Filename
    6191834