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Two-dimensional DOA Estimation for Coprime Planar Array: A Coarray Tensor-based Solution

机译:互质平面阵列的二维DOA估计:基于互阵列张量的解决方案

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Coprime arrays can cope with the underdetermined case for direction-of-arrival (DOA) estimation. However, the popular matrix-based coarray signal processing approaches suffer performance loss on the underlying characteristics among the multi-dimensional signals. To address this problem, we propose a novel coarray tensor-based two-dimensional underdetermined DOA estimation method for coprime planar array in this paper, where both the multi-dimensional information of the received signals and the augmented coarray are effectively utilized. The received signal tensors of the coprime planar array are constructed by concatenating each snapshot, which are then transformed to an augmented uniform rectangular array statistics for extending the effective array aperture. Subsequently, the tensorization technique is adopted to increase the degrees-of-freedom of the proposed DOA estimation method, and a structured coarray tensor is optimized for super-resolution DOA estimation. The effectiveness of the proposed method is verified via simulation results.
机译:互质数组可以应对到达方向(DOA)估计的不确定情况。然而,流行的基于矩阵的共阵列信号处理方法在多维信号中的基本特性上遭受性能损失。为了解决这个问题,本文提出了一种新颖的基于共数组张量的二维互定DOA估计方法,用于共质数平面数组,有效地利用了接收信号的多维信息和增强后的协数组。通过连接每个快照来构造互质平面阵列的接收信号张量,然后将其转换为增强的均匀矩形阵列统计量,以扩展有效阵列孔径。随后,采用张量化技术来提高所提出的DOA估计方法的自由度,并针对超分辨率DOA估计优化了结构化的协阵列张量。仿真结果验证了该方法的有效性。

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