• DocumentCode
    2267333
  • Title

    Direction of arrival estimation using the MUSIC algorithm for a MIMO OFDM radar

  • Author

    Sit, Yoke Leen ; Sturm, Christian ; Baier, Johannes ; Zwick, Thomas

  • Author_Institution
    Inst. fur Hochfrequenztech. und Elektron., Karlsruhe Inst. of Technol., Karlsruhe, Germany
  • fYear
    2012
  • fDate
    7-11 May 2012
  • Abstract
    In this paper, the OFDM Radar and Communication System, which is equipped with a range and Doppler estimation algorithm, is extended to a MIMO configuration for target localization in the azimuth. This is done by exploiting the phase difference between multiple transmit-receive antenna pairs, along with utilizing orthogonal transmit signals. This paper presents a simulation-based investigation of achievable performance in terms of angular resolution with MUSIC. The MIMO-OFDM Radar adopts an interleaving frame structure for transmitting orthogonal waveforms in order to null the signal-to-interference ratio in the respective subchannels used and to avoid directivity of the transmit radiation pattern. The accuracy increases as more transmit and receive antenna pairs are used, as demonstrated in the paper where the simulation results of the 4×4 MIMO system outperforms the 2×2 system tremendously in terms of object separability at the separation angle of 5°.
  • Keywords
    MIMO radar; antenna arrays; antenna radiation patterns; direction-of-arrival estimation; radar antennas; radar signal processing; receiving antennas; signal classification; transmitting antennas; Doppler estimation algorithm; MIMO OFDM radar; MIMO configuration; MIMO system; MUSIC algorithm; angular resolution; azimuth; communication system; direction of arrival estimation; interleaving frame structure; multiple transmit-receive antenna pairs; orthogonal transmit signals; signal-to-interference ratio; simulation-based investigation; subchannels; target localization; transmit radiation pattern directivity; transmitting orthogonal waveforms; Multiple signal classification; OFDM; Radar antennas; Radar cross section; Receiving antennas; Transmitting antennas;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Radar Conference (RADAR), 2012 IEEE
  • Conference_Location
    Atlanta, GA
  • ISSN
    1097-5659
  • Print_ISBN
    978-1-4673-0656-0
  • Type

    conf

  • DOI
    10.1109/RADAR.2012.6212141
  • Filename
    6212141