• DocumentCode
    2402814
  • Title

    Range Doppler detection for automotive FMCW radars

  • Author

    Winkler, Volker

  • Author_Institution
    DICE GmbH & Co KG, Linz
  • fYear
    2007
  • fDate
    10-12 Oct. 2007
  • Firstpage
    166
  • Lastpage
    169
  • Abstract
    The FMCW-Radar-Principle is widely used for automotive radar systems. The basic idea for FMCW-Radars is to generate a linear frequency ramp as transmit signal. The difference frequency between the transmitted and received signal is determined after downconversion. In order to detect range and velocity together, the information, extracted from one frequency ramp, is not enough, because it is ambiguous. Several subsequent ramps have to be generated to remove the ambiguity between the frequency portion produced by range and the doppler frequency. In this paper two methods are presented to perform this basic signal processing step. The two methods have the Fast Fourier Transform as basic calculation step in common, but the number of FFTs and their length are different. The requirements on bandwidth for the IF-Hardware and A/D-Converters are also determined by the algorithm for Range-Doppler-Detection. The CFAR (Constant False Alarm Rate)-Algorithm for target detection must also be adapted to the chosen method. Both methods have been verified with a 24 GHz radar prototype. The Radar-Frontend has been built with a newly developed SiGe-Radar-Chipset on Infineon´s B7HF200-Process with a transition frequency of 200 GHz.
  • Keywords
    CW radar; FM radar; fast Fourier transforms; radar signal processing; road vehicle radar; signal detection; A/D-converters; Doppler frequency; IF-hardware; SiGe; SiGe-Radar-Chipset; automotive FMCW radars; automotive radar systems; constant false alarm rate-algorithm; difference frequency; fast Fourier transform; frequency 200 Hz; frequency 24 GHz; linear frequency ramp; radar-frontend; range Doppler detection; range frequency; received signal; signal processing step; target detection; transmit signal; transmitted signal; Automotive engineering; Bandwidth; Data mining; Doppler radar; Fast Fourier transforms; Flexible printed circuits; Frequency; Radar detection; Signal generators; Signal processing algorithms;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Radar Conference, 2007. EuRAD 2007. European
  • Conference_Location
    Munich
  • Print_ISBN
    978-2-87487-004-0
  • Type

    conf

  • DOI
    10.1109/EURAD.2007.4404963
  • Filename
    4404963