前向散射雷达回波特性及影响规律分析

      Analysis of the characteristic and influence rules of FSR echo

      • 摘要: 前向散射雷达(forward scatter radar, FSR)在低、慢、小目标探测中发挥重大作用,研究目标穿越前向散射区时的回波特性具有重要意义。本文在近场发射近场接收条件下,首先针对菲涅尔-基尔霍夫衍射理论对目标实际散射场及总场的表征能力进行了分析,结果表明该模型仅在正前向很小的角度范围内有效,当目标处于第一菲涅尔区外时,由于目标表面感应电流产生的散射场增大,仅考虑衍射模型已不能准确反映总场及散射场的变化,还需考虑目标反射。以矩形平板目标为例,仿真分析了目标尺寸、运动参数和穿越基线位置对前向散射回波的影响规律;并通过暗室测量进行了验证。研究结论对FSR的实际应用具有理论指导作用。

         

        Abstract: Forward scatter radar (FSR) plays a significant role in the detection of low, slow, and small targets, so it is of great importance to study the echo characteristics of targets passing through the forward scattering region. In this paper, under the condition of near-field transmission and near-field reception, firstly, the ability of the Fresnel-Kirchhoff diffraction theory to characterize the actual scattered field and the total field of the target is analyzed. The results indicate that this model is effective only within a very small angle range directly in front. When the target is outside the first Fresnel zone, due to the increased scattered field produced by the induced currents on the target surface, considering only the diffraction model is no longer sufficient to accurately reflect the changes in the total and scattered fields. Then, using a rectangular plate target as a case study, the influence of target size, motion parameters, and the position in the moment of crossing on the forward scatter echo is simulated and analyzed. Finally, the results are verified by the darkroom measurements. The research results can provide theoretical guidance for the practical application of FSR.

         

      /

      返回文章
      返回