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Estimating DOA and polarization with spatially spread loop and dipole pair array

机译:利用空间扩展环路和偶极对阵列估算DOA和极化

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摘要

The nonuniform L-shaped spatially spread loop and dipole (SSLD) array whose inter-element spacing is greater than half a wavelength is studied. A joint parameter estimation algorithm of direction of arrival (DOA), frequency and polarization is presented for plane-wave signals. The direct sampling and the corresponding delayed sampling data are used to construct the data correlation matrix. On the basis of the subspace theory and the least square method, the frequency and the steering vector of the whole array are obtained. According to the relationship of the array manifold vector between electric dipoles and magnetic loops, the polarization parameters are given. The unambiguous phase estimates are acquired by applying virtual baseline array transformation to the spatial steering vectors, and they are used as coarse references to disambiguate the cyclic phase ambiguities in phase differences between two adjacent array elements on the array, then the high accuracy DOA estimates are obtained. Closed-form solutions for each parameter are obtained. This method has advantages of lower calculation complexity and no parameter matching. The experiment results verify the effectiveness and feasibility of the presented algorithm.
机译:研究了元件间距大于一半波长的非均匀L形空间扩展环和偶极(SSLD)阵列。针对平面波信号,提出了到达方向(DOA),频率和极化的联合参数估计算法。直接采样和相应的延迟采样数据用于构造数据相关矩阵。基于子空间理论和最小二乘法,获得了整个阵列的频率和转向矢量。根据电偶极子与磁环之间阵列流形矢量的关系,给出了极化参数。通过将虚拟基线阵列变换应用于空间导引向量来获取明确的相位估计,并将其用作粗糙参考以消除阵列上两个相邻阵列元素之间的相位差中的循环相位歧义,然后进行高精度DOA估计获得。获得每个参数的闭式解。这种方法的优点是计算复杂度低,并且没有参数匹配。实验结果证明了该算法的有效性和可行性。

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