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首页> 外文期刊>IEEE Transactions on Signal Processing >Subspace Direction Finding With an Auxiliary-Vector Basis
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Subspace Direction Finding With an Auxiliary-Vector Basis

机译:基于辅助矢量的子空间方向寻找

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摘要

We develop a new subspace direction-of-arrival (DOA) estimation procedure that utilizes a noneigenvector basis. Computation of the basis is carried out by a modified version of the orthogonal auxiliary-vector (AV) filtering algorithm. The procedure starts with the linear transformation of the array response scanning vector by the input autocorrelation matrix. Then, successive orthogonal maximum cross-correlation auxiliary vectors are calculated to form a basis for the scanner-extended signal subspace. As a performance evaluation example, our studies for uncorrelated sources demonstrate a gain in the order of 15 dB over MUSIC, 7 dB over ESPRIT, and 3 dB over the grid-search maximum likelihood DOA estimator at probability of resolution 0.9 with a ten-element array and reasonably small observation data records. Results for correlated sources are reported as well
机译:我们开发了一种新的子空间到达方向(DOA)估计程序,该程序利用了非特征向量基础。基础的计算是通过正交辅助矢量(AV)滤波算法的修改版本进行的。该过程开始于通过输入自相关矩阵对阵列响应扫描向量进行线性变换。然后,计算连续的正交最大互相关辅助矢量,以形成扫描仪扩展信号子空间的基础。作为一个性能评估示例,我们对不相关源的研究表明,在分辨率为0.9且具有十个元素的情况下,其增益比MUSIC高15 dB,比ESPRIT高7 dB,比网格搜索最大似然DOA估计高3 dB。排列并记录较小的观测数据记录。还报告了相关来源的结果

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