Array manifold matching algorithm based on fourth-order cumulant for 2D DOA estimation with two parallel nested arrays

Sheng Liu, Jing Zhao, Yu Zhang
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Abstract

In this paper, a two-dimensional (2D) direction-of-arrival (DOA) estimation algorithm with two parallel nested arrays is developed. Firstly, a constructor method for fourth-order cumulant (FOC) matrices is given according to the distribution of sensors. Then a pre-existing DOA estimation technique is firstly used to estimate the elevation angles and an improved unilateral array manifold matching (AMM) algorithm is used to estimate the azimuth angles. Compared with some classical 2D DOA estimation algorithms, the proposed algorithm has much better estimation performance, particularly in the case of low SNR environment. Compared with some traditional FOC-based algorithms, the proposed algorithm has higher estimation precision. Simulation results can illustrate the validity of proposed algorithm.
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基于四阶累积量的阵列流形匹配算法用于两个并行嵌套阵列的二维DOA估计
本文提出了一种基于两个并行嵌套阵列的二维DOA估计算法。首先,根据传感器的分布,给出了四阶累积量矩阵的构造方法。然后利用已有的方位估计技术估计仰角,利用改进的单边阵列流形匹配算法估计方位角。与一些经典的二维DOA估计算法相比,该算法具有更好的估计性能,特别是在低信噪比环境下。与传统的基于foc的算法相比,该算法具有更高的估计精度。仿真结果验证了算法的有效性。
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