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New direction of arrival estimation of coherent signals based on reconstructing matrix under unknown mutual coupling

机译:未知互耦条件下基于重构矩阵的相干信号到达方向估计

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A direction of arrival (DOA) estimation algorithm for coherent signals in the presence of unknown mutual coupling is proposed. A group of auxiliary sensors in a uniform linear array are applied to eliminate the effects on the orthogonality of subspaces brought by mutual coupling. Then, a Toeplitz matrix, whose rank is independent of the coherency between impinging signals, is reconstructed to eliminate the rank loss of the spatial covariance matrix. Therefore, the signal and noise subspaces can be estimated properly. This method can estimate the DOAs of coherent signals under unknown mutual coupling accurately without any iteration and calibration sources. It has a low computational burden and high accuracy. Simulation results demonstrate the effectiveness of the algorithm. (C) 2016 Society of Photo-Optical Instrumentation Engineers (SPIE)
机译:提出了在未知互耦的情况下,相干信号的到达方向估计算法。应用一组均匀线性阵列中的辅助传感器,以消除相互耦合对子空间正交性的影响。然后,重建其Toeplitz矩阵,其秩与撞击信号之间的相干性无关,以消除空间协方差矩阵的秩损失。因此,可以正确估计信号和噪声子空间。该方法可以准确估计未知互耦下相干信号的DOA,而无需任何迭代和校准源。它具有较低的计算负担和较高的准确性。仿真结果证明了该算法的有效性。 (C)2016年光电仪器工程师学会(SPIE)

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