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COARRAY INTERPOLATION-BASED COPRIME ARRAY DOA ESTIMATION VIA COVARIANCE MATRIX RECONSTRUCTION

机译:基于COARRAY插值的基于协方差的COPRIME阵列DOA估计通过协方差矩阵重建

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Coprime arrays are capable of achieving an increased number of degrees-of-freedom by operating the coarray signals. However, their non-uniform coarrays prevent the full utilization of the available signals. To address this problem, a novel coarray interpolation-based direction-of-arrival (DOA) estimation algorithm via covariance matrix reconstruction is proposed in this paper. In particular, we formulate a gridless optimization problem to reconstruct the covariance matrix of the interpolated coarray, such that all the coarray observations are fully utilized. We also investigate the rotational invariance in the coarray domain to retrieve the DOAs. Neither spatial sampling nor spectrum searching is required in the proposed algorithm, indicating the capability of resolving off-grid DOAs. Simulation results demonstrate the effectiveness of the proposed DOA estimation algorithm.
机译:CopRime阵列能够通过操作CoArray信号来实现增加的自由度。然而,它们的非均匀综合载体防止了可用信号充分利用。为了解决这个问题,本文提出了一种新的基于CoArray插值的到达方式(DOA)估计算法。特别地,我们制定无缝的优化问题,以重建内插酰亚的子的协方差矩阵,使得所有携带委员会观察结果都充分利用。我们还调查Coarray域中的旋转不变性以检索DOA。在所提出的算法中需要空间采样和频谱搜索,表示解析Off-Grid DoAs的能力。仿真结果证明了所提出的DOA估计算法的有效性。

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