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DOA and Gain-Phase Errors Estimation for Noncircular Sources With Central Symmetric Array

机译:具有中心对称阵列的非圆形光源的DOA和相位误差估计

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摘要

The problem of direction-of-arrival (DOA) estimation for noncircular sources impinging on a central symmetric array (CSA) in the presence of sensor gain-phase uncertainties is addressed in this paper. A noniterative method is proposed and the corresponding stochastic Cramér-Rao bound is derived. The proposed method is realized through two steps. First, an eigenstructure-based technique is presented to estimate the spatial signatures. Second, the DOAs are obtained by adopting an element-wise division approach to the estimated spatial signatures, based on which, the sensor gain-phase errors are given in closed-form. The ambiguity of DOA estimation is analyzed as well. The proposed method offers a number of advantages in comparison with the existing methods that apply to CSA. First, the DOA estimator is independent of the sensor phases. Second, the proposed method applies to incoherent sources. Third, the proposed method is capable of providing 360° azimuthal coverage under certain conditions. Fourth, an additional performance gain is achieved by taking the property of noncircular sources into consideration. Numerical simulations are provided to verify the effectiveness of the proposed method.
机译:本文解决了存在传感器增益相位不确定性的非圆形光源撞击到中央对称阵列(CSA)的到达方向(DOA)估计问题。提出了一种非迭代方法,并推导了相应的随机Cramér-Rao界。该方法通过两个步骤实现。首先,提出了一种基于特征结构的技术来估计空间特征。其次,通过对估计的空间特征采用逐元素划分方法来获得DOA,在此基础上,以封闭形式给出传感器增益相位误差。还分析了DOA估计的不确定性。与适用于CSA的现有方法相比,该方法具有许多优势。首先,DOA估算器与传感器相位无关。其次,所提出的方法适用于非相干源。第三,所提出的方法能够在某些条件下提供360°方位角覆盖。第四,通过考虑非圆形光源的特性可以获得额外的性能提升。提供数值模拟以验证所提出方法的有效性。

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