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Improved spatial smoothing techniques for DOA estimation of coherent signals

机译:用于相干信号的DOA估计的改进的空间平滑技术

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In the context of coherent signal classification, spatial smoothing is necessary for the application of the eigen-based direction of arrival (DOA) estimation methods. However, the currently known spatial smoothing algorithms not only reduce the effective aperture of the array, but also do not consider the cross correlations of the subarray outputs. An improved spatial smoothing algorithm which can fully utilize the correlations of the array outputs and produce a more stable estimate of the covariance matrix is presented. Simulation results are provided to verify the theoretical prediction. The superiority of this method over the conventional methods is obvious, especially when the SOSR (subarray to overall size ratio) is small.
机译:在相干信号分类的情况下,空间平滑对于基于特征的到达方向(DOA)估计方法的应用是必要的。但是,当前已知的空间平滑算法不仅减小了阵列的有效孔径,而且没有考虑子阵列输出的互相关。提出了一种改进的空间平滑算法,该算法可以充分利用阵列输出的相关性并产生协方差矩阵的更稳定的估计。提供仿真结果以验证理论预测。这种方法相对于传统方法的优越性是显而易见的,尤其是当SOSR(子阵列与总体尺寸之比)很小时。

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