基于优化面元散射场模型的圆极化海杂波多普勒谱研究

    Study on Circularly Polarized Sea Clutter Doppler Spectrum Based on Refined Facet Scattering Field Model

    • 摘要: 海杂波作为雷达回波中的主要干扰成分,其多普勒谱直接反映海面运动状态与散射特性,更是实现杂波抑制与海况参数反演的核心依据。鉴于圆极化海杂波具有极化隔离性强、对非对称散射体敏感等独特优势,基于优化面元散射场模型,对二维线性时变海面的圆极化电磁散射场进行了建模。在此基础上,实现了L波段圆极化海杂波多普勒谱的仿真,并结合谱峰频率、3dB谱宽、双峰间距及峰值比等特征参数,系统地分析了极化方式、入射角、风速及风向等关键参数对圆极化海杂波多普勒谱特性的影响规律。研究结果对复杂海况下雷达杂波抑制及海面参数反演具有一定的参考意义。

       

      Abstract: As the primary source of interference in radar echoes, the Doppler spectrum of sea clutter directly reflects the motion state and scattering characteristics of the sea surface and serves as the core basis for clutter suppression and the inversion of sea state parameters. Given the unique advantages of circularly polarized sea clutter, such as strong polarization isolation and sensitivity to asymmetric scatterers, the circularly polarized electromagnetic scattering field of two-dimensional linear time-varying sea surface was modeled based on a refined facet scattering field model. Based on this, the simulation of the circularly polarized sea clutter Doppler spectrum at L-band was achieved. By utilizing the characteristic parameters such as the peak frequency, 3dB bandwidth, inter-peak spacing and peak ratio, the influences of polarization, incident angle, wind speed and wind direction on the characteristics of the circularly polarized sea clutter Doppler spectrum were systematically analyzed. The research results have certain reference significance for radar clutter suppression in complex sea conditions and sea surface parameter inversion.

       

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