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On Spatial Smoothing for DOA Estimation of 2D Coherently Distributed Sources with Double Parallel Linear Arrays

机译:双并行线性阵列二维相干分布源DOA估计的空间平滑研究

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Considering coherently-distributed (CD) sources are correlated with each other, a two-dimensional (2D) coherent CD source model is proposed according to the characteristics of an underwater acoustic channel. Under the assumption of small angular spreads, rotational invariance relationships within and between subarrays of double parallel linear arrays are derived. As the covariance matrix of spatial smoothing obtained from receive vectors expressed by rotational invariance relationships is proven to be full rank, decoherence of the 2D coherent CD source is proposed by spatial smoothing of the double parallel linear arrays. A propagator method base on spatial smoothing (SS-PM) and estimation of signal parameters via rotational invariance techniques (ESPRIT) base on spatial smoothing (SS-ESPRIT) method established by covariance matrix of spatial smoothing are proposed. The proposed methods do not require peak-searching, angles matching and information of deterministic angular signal distribution function. Simulations are conducted to verify the effectiveness of the proposed methods.
机译:考虑到相干分布(CD)源相互关联,根据水下声波通道的特点,提出了二维(2D)相干CD源模型。在小角展度的假设下,推导了双平行线性阵列的子阵列之内和之间的旋转不变性关系。由于从旋转不变关系表示的接收向量获得的空间平滑协方差矩阵被证明是满秩的,因此通过双平行线性阵列的空间平滑提出了二维相干CD源的去相干性。提出了一种基于空间平滑(SS-PM)的传播器方法,并通过基于空间平滑协方差矩阵建立的基于空间平滑(SS-ESPRIT)方法的旋转不变技术(ESPRIT)估计信号参数。所提出的方法不需要峰值搜索,角度匹配和确定性角度信号分布函数的信息。进行仿真以验证所提出方法的有效性。

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