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<item>
  <id>05709501</id>
  <dt>j</dt>
  <an>05709501</an>
  <augroup>
    <au>Gu, Jian-Feng</au>
    <au>Wei, Ping</au>
    <au>Tai, Heng-Ming</au>
  </augroup>
  <ti>2-D direction-of-arrival estimation of coherent signals using cross-correlation matrix.</ti>
  <so>Signal Process. 88, No. 1, 75-85 (2008).</so>
  <py>2008</py>
  <pu>Elsevier Science, Amsterdam</pu>
  <lagroup>
    <la>EN</la>
  </lagroup>
  <ccgroup>
  </ccgroup>
  <utgroup>
    <ut>direction of arrival</ut>
    <ut>angle estimation</ut>
    <ut>cross-correlation</ut>
    <ut>spatial smoothing</ut>
    <ut>coherent signals</ut>
  </utgroup>
  <cigroup>
  </cigroup>
  <ligroup>
    <li>doi:10.1016/j.sigpro.2007.07.013</li>
  </ligroup>
  <abgroup>
    <ab>Summary: We present a new two-dimensional (2-D) direction-of-arrival (DOA) angle estimation method for coherent or highly correlated narrowband signals using L-shape arrays. The proposed method decorrelates the coherent incident signals and reconstructs the signal subspace using the cross-correlation matrix. Then the shift invariance property of the array geometry is employed to estimate the azimuth and elevation angles. This approach enables the 2-D DOA estimation without the use of peak search and is robust to noise. Moreover, we extend the proposed forward method to the forward/backward one. Experimental results demonstrate that satisfactory performances of the proposed methods are obtained for correlated signals in the low signal-to-noise ratio (SNR) situations and with small number of snapshots.</ab>
    <rv></rv>
  </abgroup>
</item>