任意阵列多径环境下的测向

M. Johnny, V. Vakili, M. Sheikhan
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摘要

本文研究了一些可能完全相关的信号到达方向的估计问题。该方法适用于非高斯独立相干信号与未知高斯噪声共存的情况。该方法首先通过映射构造虚拟均匀线性阵列(ULA),并假设所有的doa都位于同一段,构造该虚拟均匀线性阵列的移位版本。为了避免由于这些映射而引起的噪声着色,我们使用累积矩阵代替协方差矩阵。在这种方法中,由于所有子阵列都是虚拟构造的,因此不需要具有规则配置的阵列来检测相干信号。该方法的优点是:增大了阵列孔径,能够用较少的传感器找到doa,并且与传统的空间平滑相比,尽可能地避免了传感器之间的耦合。
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Direction finding in multipath environment with arbitrary array
In this paper, the problem of estimating the direction of arrival of signals of which some may be perfectly correlated is considered. This method can be applied in the situation that the non-Gaussian independent and coherent signals coexist with unknown Gaussian noise. In this method at first via mappings, the virtual uniform linear array (ULA) and also the shifted versions of this virtual ULA by assuming that all the DOAs are located in one section are constructed. In order to avoid coloring the noise because of these mappings we use a cumulant matrix instead of a covariance ones. In this method since we construct all the subarrays virtually for detection of coherent signals we do not need the array with regular configuration. The advantages of this method are: increasing the array aperture, having the ability to find the DOAs with fewer sensors and also avoiding the coupling between sensors as much as possible in contrast to conventional spatial smoothing.
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