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With a small number of snapshots, performances of uniform circular array(UCA) root-MUSIC based methods for directionof-arrival(DOA) estimation suffer serious degradation, because the beamspace sample covariance matrix(BSCM) severely deviates from the true one. To solve this problem, an iterative technique is proposed. The proposed technique has two key points: transform array data into beamspace data and construct a BSCM; modify the BSCM repeatedly by removing the residual parts. Meanwhile,error and beamspace leakage associated with the BSCM are investigated. The proposed technique can significantly reduce the error and the beamspace leakage which in turn could improve the performance for DOA estimation. Simulation results are given to illustrate the superiority of the proposed technique for uncorrelated and correlated signals.
With a small number of snapshots, performances of uniform circular array (UCA) root-MUSIC based methods for directionof-arrival (DOA) estimation suffer serious degradation, because the beamspace sample covariance matrix (BSCM) severely deviates from the true one. To solve this problem, an iterative technique is proposed. The proposed technique has two key points: transform the data into beamspace data and construct a BSCM; modify the BSCM repeatedly by removing the residual parts. Meanwhile, error and beamspace leakage associated with the BSCM are The proposed technique can significantly reduce the error and the beamspace leakage which in turn could improve the performance for DOA estimation.