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Cascaded method for ionospheric decontamination and sea clutter suppression for high-frequency hybrid sky-surface wave radar

机译:高频混合天面波雷达电离层去污和海杂波抑制的级联方法

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摘要

In high-frequency (HF) hybrid sky-surface wave radar, the first-order sea clutter broadening is very severely under the influence of ionosphere and bistatic angle, which affects the detection of ship target. In this study, a cascaded method for ionospheric decontamination and sea clutter suppression to enable detection of ship target is presented. Firstly, the radar configuration, sea clutter broadening characteristics, and model are introduced based on the newly-developed integrated HF sky-surface wave experimental system. In the cascaded processing method, the time-frequency analysis method based on S-method is used to correct the ionospheric phase contamination with large amplitude. Then, a novel forward-backward linear prediction algorithm is proposed to suppress the broadening bistatic sea clutter caused by bistatic angle, which is based on the distribution characteristics and the multi-dimensional feature of first-order sea clutter. Finally, the proposed method is examined by measured data. Experimental results indicate that the proposed method can well suppress the broadening sea clutter and improve the ship target detection performance.
机译:在高频(HF)混合天地波雷达中,电离层和双基地角的影响下,一阶海杂波展宽非常严重,影响了舰船目标的探测。在这项研究中,提出了一种用于电离层净化和海杂波抑制的级联方法,以能够检测船舶目标。首先,基于新开发的综合性HF天面波实验系统,介绍了雷达的结构,海杂波扩展特性和模型。在级联处理方法中,使用基于S方法的时频分析方法来校正大幅度电离层相位污染。然后,基于一阶海杂波的分布特征和多维特征,提出了一种新的前向后线性预测算法来抑制由双基地角引起的双海杂波展宽。最后,通过实测数据对提出的方法进行了研究。实验结果表明,该方法能够很好地抑制海浪杂波的蔓延,提高舰船目标检测性能。

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