利用超宽带雷达对弱散射中心人造目标进行三维成像

R. Salman, I. Willms, T. Sakamoto, Toru Sato, A. Yarovoy
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引用次数: 5

摘要

提出了一种满足超分辨条件的三维双静、全偏振超宽带成像系统。目的是检查具有弱散射中心的目标,并证明在这些条件下最新成像方法的性能。这个问题进一步阻碍了跨次优合成阵列,即天线的主波束与弱散射体的方向不对齐。将打开的笔记本电脑与固定在显示器背面的刀用作实验验证的目标。该位置键盘的雷达横截面很小,显示了很弱的多弹跳散射机制。通过实时修正距离点偏移(RRPM)和常规Kirchhoff偏移进行成像评估。采用锥形聚四氟乙烯棒集成的一对锥形槽线Vivaldi天线和9 GHz载波下100%分数带宽的m序列雷达装置进行了实验验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
3D imaging of a manmade target with weak scattering centres by means of UWB-radar
In this paper a 3D bi-static, fully polarimetric Ultra-Wideband (UWB) imaging system which satisfies superresolution conditions is presented. The objective is to inspect a target with weak scattering centres and to prove the performance of recent imaging methods under these conditions. This issue is handicapped further by spanning a suboptimal synthetic array, i.e. the main beam of the antennas is not aligned with the orientation of the weak scatterers. An opened laptop with a knife fixed at the back of the display is used as the target for an experimental validation. The radar cross section of the keyboard in this position can be assumed to be very small which reveals very weak multibounce scattering mechanisms. The evaluation of the imaging is performed by the real-time capable revised range point migration (RRPM) and the conventional Kirchhoff migration. The experimental validation is carried out with a pair of two tapered slot line Vivaldi antennas both integrated in a conical shaped teflon rod and an M-sequence Radar device with 100% fractional bandwidth at a carrier of 9 GHz.
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