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Radar signatures of indoor clutter for through-the-wall radar applications

机译:穿越墙雷达应用室内杂波的雷达特征

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In through-the-wall radar (TTWR) applications, scattering by indoor clutter elements can greatly confound the detection of humans. This paper analyzes the spectral and azimuthal scattering characteristics of various types of individual furniture targets and compares these to humans. Radar cross section (RCS) values of furniture and humans are obtained using the finite difference time domain (FDTD) technique over the 1-5 GHz frequency range and the 0-360 azimuth angle range for both co- and cross-polarized scattering. In the case of furniture, RCS responses show to the highest returns when viewing the planar surfaces of the clutter objects. Objects consisting primarily of smaller planar surfaces with more complex geometrical features showed a more uniform response with no preferred orientation showing a larger response. Human RCS produced from the biological models showed a more constant RCS when viewing the co-polarized response, where the back produced the highest response due to the more planar surface. The cross-polarized response was more varied providing for a wider range of RCS values.
机译:在贯通壁雷达(TTWR)应用中,室内杂波元素的散射可以极大地混淆人类的检测。本文分析了各种类型的各类家具目标的光谱和方位角散射特性,并将其与人类进行比较。使用在1-5GHz频率范围内的有限差分时域(FDTD)技术和交叉极化散射的0-360方位角范围,获得家具和人类的雷达横截面(RCS)值。在家具的情况下,在观察杂波物体的平面表面时,RCS响应显示到最高返回。主要由具有更复杂的几何特征的较小平面表面组成的物体显示出更均匀的响应,没有优选的取向,显示出更大的反应。从生物模型产生的人RCS在观察共聚响应时显示出更常数的RCS,其中后部产生由于更平坦的表面而产生的最高响应。交叉极化响应更加多样化,提供更广泛的RCS值。

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