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Computationally Efficient Transient Interference Excision Method for Skywave Over-the-Horizon Radar

机译:天波超视距雷达的高效计算瞬态干扰消除方法

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摘要

The skywave over-the-horizon radar (OTHR) has attracted considerable attention for its ability of out-of-sight surveillance. However, in practice, its operational performance is severely degraded by transient interferences. Some previous works focus on time-domain methods to achieve transient interference suppression and cannot get rid of the corruption segment blanking and data interpolation. In fact, the data interpolation method is usually time-consuming and may suffer performance loss. To avoid data interpolation, some interpolation-free methods are proposed and show superior performance. However, the significant computational costs impede the application in reality. In this letter, a new method for transient interference suppression is proposed. After interference localization, a signal subspace, representing the clutter and target, is constructed by the interference-free data. Then, transient interferences are excised by solving a bicriterion optimization problem that minimizes the quadratic fitting error and the energy orthogonal to the signal subspace simultaneously. The proposed method can excise transient interferences with clutter and potential target echoes preserved at the same time; thus, data interpolation is no longer needed. The proposed method is evaluated by experimental data collected from a trial skywave OTHR, and the results verify its effectiveness.
机译:天波超视距雷达(OTHR)由于其视线外监视能力而备受关注。但是,实际上,瞬态干扰会严重降低其运行性能。先前的一些工作集中在时域方法上,以实现瞬态干扰抑制,并且无法摆脱损坏片段的消隐和数据插值。实际上,数据插值方法通常很耗时,并且可能会损失性能。为了避免数据插值,提出了一些无插值的方法,这些方法显示了优越的性能。但是,巨大的计算成本实际上阻碍了该应用程序。本文提出了一种抑制瞬态干扰的新方法。在进行干扰定位之后,由无干扰数据构成代表杂波和目标的信号子空间。然后,通过解决双向准则优化问题来消除瞬态干扰,该准则同时使二次拟合误差和正交于信号子空间的能量最小化。所提出的方法可以消除瞬时干扰,同时保留杂波和潜在的目标回波。因此,不再需要数据插值。通过从试验性天波OTHR收集的实验数据对提出的方法进行了评估,结果验证了其有效性。

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