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New BSS-based ABF for heterogeneous ionospheric clutter mitigation in HFSWR

机译:新的基于BSS的ABF用于减轻HFSWR中的电离层杂波

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摘要

Ionospheric clutter is detrimental to target detection in high-frequency surface-wave radar (HFSWR). Adaptive beamforming (ABF) has been adopted to suppress the ionospheric clutter in recent years. Unfortunately, the performance of ABF degrades due to the heterogeneity of the ionospheric clutter. In this study, a new approach is proposed to suppress the ionospheric clutter. A novel heterogeneous ionospheric clutter model based on the mixture of mutually independent ionospheric clutter sources is established. The blind source separation (BSS) approach is used to separate the clutter sources first. Then the separated components are exploited to estimate the spatial covariance matrix (SCM) of the cell under test. The SCM estimation based on BSS is more accurate than the classical sample matrix inversion method under the heterogeneous ionospheric clutter. Therefore, the ABF performance improves due to the better SCM estimation. The simulation and real data results demonstrated the effectiveness of the new BSS-based ABF method in HFSWR. The signal-to-clutter-plus-noise ratio of the new method improved compared with the traditional ABF based on the SMI method. The new method can help to detect targets under the heterogeneous ionospheric clutter. It may also be a promising methodology in other ABF applications.
机译:电离层杂波不利于高频表面波雷达(HFSWR)中的目标检测。近年来,自适应波束成形(ABF)已被采用来抑制电离层杂波。不幸的是,由于电离层杂波的异质性,ABF的性能下降。在这项研究中,提出了一种抑制电离层杂波的新方法。建立了基于相互独立的电离层杂波源混合的新型非均质电离层杂波模型。盲源分离(BSS)方法用于首先分离杂波源。然后,利用分离的分量来估计被测细胞的空间协方差矩阵(SCM)。在非均匀电离层杂波下,基于BSS的SCM估计比经典样本矩阵反演方法更准确。因此,由于更好的SCM估计,ABF性能得以提高。仿真和实际数据结果证明了在HFSWR中基于BSS的新ABF方法的有效性。与基于SMI方法的传统ABF相比,新方法的信噪比加高。这种新方法可以帮助检测非均匀电离层杂波下的目标。在其他ABF应用程序中,它可能也是一种很有前途的方法。

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