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Non-Iterative Subspace-Based DOA Estimation in the Presence of Nonuniform Noise

机译:基于非迭代子空间的DOA估计在存在非均匀噪声

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The uniform white noise assumption is one of the basic assumptions in most of the existing direction-of-arrival (DOA) estimation methods. In many applications, however, the nonuniform white noise model is more adequate. Then, the noise variances at different sensors have to be also estimated as nuisance parameters while estimating DOAs. In this letter, different from the existing iterative methods that address the problem of nonuniform noise, a non-iterative two-phase subspace-based DOA estimation method is proposed. The first phase of the method is based on estimating the noise subspace via eigendecomposition (ED) of some properly designed matrix and it avoids estimating the noise covariance matrix. In the second phase, the results achieved in the first phase are used to estimate the noise covariance matrix, followed by estimating the noise subspace via generalized ED. Since the proposed method estimates DOAs in a non-iterative manner, it is computationally more efficient and has no convergence issues as compared to the existing methods. Simulation results demonstrate better performance of the proposed method as compared to other existing state-of-the-art methods.
机译:均匀的白噪声假设是大多数现有到达方向(DOA)估计方法中的基本假设之一。然而,在许多应用中,非均匀的白噪声模型更为足够。然后,在估计DOA时,不同传感器的噪声差异也必须估计为滋扰参数。在这封信中,不同于解决不均匀噪声问题的现有迭代方法,提出了一种非迭代的两相管空间的DOA估计方法。该方法的第一阶段基于通过一些适当设计的矩阵的eigEndeconomposition(ed)估计噪声子空间,并且避免估计噪声协方差矩阵。在第二阶段中,在第一阶段实现的结果用于估计噪声协方差矩阵,然后通过广泛的ED估计噪声子空间。由于所提出的方法以非迭代方式估计DOA,因此计算地更有效并且与现有方法相比没有收敛问题。仿真结果表明,与其他现有最先进的方法相比,提高了所提出的方法的性能。

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