论文标题

通过结合交叉散射来提高活动毫米波僵化成像的质量

Improving the quality of active millimeter wave standoff imaging by incorporating the cross-polarized scattering

论文作者

Shojaeian, Seyedehzahra, Ahmadi-Boroujeni, Mehdi, Hajitabarmarznaki, Shiva

论文摘要

在本文中,我们报告了一种基于极化的THZ成像技术,该技术从PEC隐藏的对象反射的反向散射数据中受益匪浅,考虑到该对象的边缘衍射是一个关键点。首先,基于物理光学原理,我们研究了PEC对象的交叉偏振反射,以显示边缘反射与对象其他部分的优越性。接下来,我们代表了使用FEKO进行近乎归档的模拟的结果,以研究PEC对象的交叉和共偏射反射与其下面的人体之间的差异。为了进一步说明,我们提出了我们的实验结果,其中我们利用了一个THZ成像系统,该成像系统由半导体的THZ摄像机和一个在100 GHz的角天线作为源。分析了交叉偏离的反向散射数据,以将PEC对象与人体区分开。此外,我们使用了两个源的正交线性极化,以最大程度地从正交边缘进行反向散射。实验结果表明,隐藏物体的边缘检测有明显的改善,表明此方法可以在THZ实时成像中高精度。

In this paper, we report a polarimetry-based THz imaging technique that highly benefits from backscatter data reflected from PEC hidden objects, considering the edge diffractions of the object as a key point. First, based on physical optic principles, we investigate the cross-polarized reflections of PEC objects in order to show the superiority of reflections of the edges to other parts of the object. Next, we represent the results of a near filed simulation using Feko to study the differences between cross and co-polarized reflections of a PEC object and the human body beneath it. To a further illustration, our experimental results are presented in which we utilized a THz imaging system consisting of a semiconductor-based THz camera and a horn antenna operating at 100 GHz as the source. Cross-polarized backscatter data is analyzed to distinguish PEC objects from the human body. Besides, we used two orthogonal linear polarizations of the source to maximize backscattering from orthogonal edges. Experimental results show a noticeable improvement in edge detection of hidden objects indicating that this method can result in high accuracy in THz real-time imaging.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源