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Computationally Efficient RF Interference Suppression Method With Closed-Form Maximum Likelihood Estimator for HF Surface Wave Over-The-Horizon Radars

机译:具有闭合形式最大似然估计器的HF表面波超视距雷达的高效计算射频干扰抑制方法

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摘要

Among all types of unwanted signals in high-frequency (HF) surface wave (HFSW) over-the-horizon (OTH) radars, radio-frequency interference (RFI) is dominant since HF band is shared by many radio services. In observation data, there are two types of common RFI. The most common one is the conventional RFI which presents vertical stripe paralleling to range axis in range-Doppler spectrum (RDS) and has been exhaustively reported by previous papers. Meanwhile, a new type of RFI characterized by sloping stripes (called $ hbox{RFI}_{rm SS}$) in RDS is also frequently observed. This work concentrates on the new $hbox{RFI}_{rm SS}$ and establishes a unified model for the above two types of RFI. Based on this generalized model, a time-domain RFI suppression algorithm is proposed here. Benefiting from a closed-form approximate maximum likelihood estimator, the proposed algorithm exhibits excellent performance and is computationally efficient. Its operational performance is evaluated using the field data recorded by experimental HFSW OTH radar of Wuhan University.
机译:在高频(HF)表面波(HFSW)视距(OTH)雷达中的所有类型的无用信号中,由于许多无线电服务共享HF频段,因此射频干扰(RFI)占主导地位。在观测数据中,有两种常见的RFI。最常见的是常规的RFI,它在距离多普勒频谱(RDS)中呈现平行于距离轴的垂直条纹,并且在以前的论文中已经详尽报道过。同时,还经常观察到一种新型的RFI,其特征是RDS中出现了倾斜的条纹(称为$ hbox {RFI} _ {rm SS} $)。这项工作集中在新的$ hbox {RFI} _ {rm SS} $上,并为上述两种类型的RFI建立了统一模型。基于这种广义模型,本文提出了一种时域RFI抑制算法。得益于封闭形式的近似最大似然估计器,该算法表现出出色的性能并且计算效率高。使用武汉大学实验性HFSW OTH雷达记录的现场数据评估其运行性能。

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