Analysis of canonical targets in near field for Forward Scatter Radar applications

M. T. Falconi, D. Comite, F. Marzano, A. Galli, P. Lombardo
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引用次数: 7

Abstract

Near-field effects in Forward Scatter Radar (FSR) applications are analyzed, focusing the attention on the characterization of the received signal as a function of target/antenna distance and of target size. A simulated analysis of the forward-scatter cross-section (FS-CS) is carried out for a typical FSR scenario where a movable target crosses the baseline. In addition to the known far-field conditions, the results are presented also for the significant near-field Fresnel region, based on a suitable numerical evaluation of the diffraction integrals as a function of the geometrical and physical parameters involved. According to a basic modeling approach, the overall FS amplitude and phase signature of typical conductive targets have been evaluated in terms of their size and distance to the antennas. The above investigations allow not only for an accurate analysis of the forward scattering problem but also for a physical insight on the performance of the FSR in near-field conditions.
前向散射雷达近场典型目标分析
分析了前向散射雷达(FSR)应用中的近场效应,重点研究了接收信号作为目标/天线距离和目标尺寸函数的特性。对典型的移动目标穿过基线的FSR场景进行了前向散射截面(FS-CS)的模拟分析。除了已知的远场条件外,基于对衍射积分作为所涉及的几何和物理参数的函数的适当数值评估,也给出了重要的近场菲涅耳区域的结果。根据一种基本的建模方法,根据典型导电目标的大小和与天线的距离,对其FS振幅和相位特征进行了评估。上述研究不仅可以对前向散射问题进行准确的分析,而且可以对近场条件下FSR的性能进行物理洞察。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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