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Radar Target Scattering Center Extraction Based on the Full-Polarization GTD Model

机译:基于全极化GTD模型的雷达靶散射中心提取

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To accurately describe the high frequency electromagnetic scattering of the radar objects, the full-polarization GTD model is established based on the combination of the full-polarization information and the geometric theory of diffraction model. Meanwhile, A novel method, MUSIC based on polarization linear variation method (PL-MUSIC) is proposed. The estimation accuracy is improved and the computational load is greatly decreased compared with the method extracting the parameters from every polarization channel. Compared with the parallel polarization MUSIC method (PP-MUSIC), the proposed method decreases the computational complexity of the smoothing process and has the close accuracy. Moreover, the spatial spectrum estimation method based on eigenspace is utilized to establish the spectrum function. Simulations and computational load comparison show the validity of the full-polarization GTD model and the advantage of the MUSIC based on polarization linear variation method.
机译:为了准确地描述雷达物体的高频电磁散射,基于全极化信息和衍射模型的几何理论的组合建立了全偏振GTD模型。同时,提出了一种新的方法,基于偏振线性变化方法(PL-Music)的音乐。与从每个偏振通道提取参数的方法相比,改善了估计精度,并且计算负荷大大降低。与平行偏振音乐方法(PP-Music)相比,所提出的方法降低了平滑过程的计算复杂性并且具有紧密的精度。此外,利用基于EIGenspace的空间谱估计方法来建立频谱函数。仿真和计算负荷比较显示了全极化GTD模型的有效性以及基于偏振线性变化方法的音乐的优势。

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