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Direction-of-Arrival Estimation for Coprime Array via Virtual Array Interpolation

机译:通过虚拟数组插值估计共质数数组的到达方向

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摘要

Coprime arrays can achieve an increased number of degrees of freedom by deriving the equivalent signals of a virtual array. However, most existing methods fail to utilize all information received by the coprime array due to the non-uniformity of the derived virtual array, resulting in an inevitable estimation performance loss. To address this issue, we propose a novel virtual array interpolation-based algorithm for coprime array direction-of-arrival (DOA) estimation in this paper. The idea of array interpolation is employed to construct a virtual uniform linear array such that all virtual sensors in the non-uniform virtual array can be utilized, based on which the atomic norm of the second-order virtual array signals is defined. By investigating the properties of virtual domain atomic norm, it is proved that the covariance matrix of the interpolated virtual array is related to the virtual measurements under the Hermitian positive semi-definite Toeplitz condition. Accordingly, an atomic norm minimization problem with respect to the equivalent virtual measurement vector is formulated to reconstruct the interpolated virtual array covariance matrix in a gridless manner, where the reconstructed covariance matrix enables off-grid DOA estimation. Simulation results demonstrate the performance advantages of the proposed DOA estimation algorithm for coprime arrays.
机译:通过导出虚拟阵列的等效信号,互质阵列可以实现更多的自由度。然而,由于导出的虚拟阵列的不均匀性,大多数现有方法无法利用由互质数阵列接收的所有信息,从而导致不可避免的估计性能损失。为了解决这个问题,我们在本文中提出了一种基于虚拟数组插值的新颖算法,用于共质数数组到达方向(DOA)估计。采用阵列插值的思想来构造虚拟均匀线性阵列,从而可以利用非均匀虚拟阵列中的所有虚拟传感器,基于该虚拟传感器定义了二阶虚拟阵列信号的原子范数。通过研究虚拟域原子范数的性质,证明了在Hermitian正半定Toeplitz条件下,内插虚拟数组的协方差矩阵与虚拟测量值有关。因此,针对等效虚拟测量向量制定了原子范数最小化问题,以无网格方式重构内插虚拟阵列协方差矩阵,其中重构的协方差矩阵能够实现离网DOA估计。仿真结果证明了所提出的针对互质数组的DOA估计算法的性能优势。

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