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Diffraction-based analysis for hidden target detection and localization using bistatic UWB radar system

机译:基于衍射的双基地超宽带雷达系统对隐藏目标的检测和定位分析

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In the scope of this paper, we analyze and evaluate in a comprehensive manner the effect of diffraction in hidden target detection and localization using ultra wide-band (UWB) radars. In order to effectively do the analysis and evaluation, we firstly derive to develop a three-dimensional electromagnetic (EM) propagation model which can characterize at any point in free space the far-field scattered by a scenario. The far-field at a given point includes the amplitude and the phase. The proposed scenario in the paper comprises of a metallic wall and a canonical object placed behind the wall in a way that there is no issue of direct line-of-sight (LOS). We configure two UWB radars, as transmitter and receiver, in bistatic mode working at high frequencies (i.e. Ka-band). Then, we apply this model to compare with some experimental results in the anechoic chamber with regard to explain and evaluate the diffraction effect in target detection and localization.
机译:在本文的范围内,我们将综合分析和评估衍射对使用超宽带(UWB)雷达进行的隐蔽目标检测和定位的影响。为了有效地进行分析和评估,我们首先导出要开发的三维电磁(EM)传播模型,该模型可以描述自由空间中任意点被场景散射的特征。给定点的远场包括幅度和相位。本文中提出的方案包括一个金属墙和一个规范的对象,该对象以不存在直接视线(LOS)问题的方式放置在墙后。我们将两台UWB雷达配置为双基地模式,在高频率(即Ka波段)下工作,作为发射器和接收器。然后,我们将该模型与消声室中的一些实验结果进行比较,以解释和评估目标检测和定位中的衍射效应。

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