亚毫米分辨率室内太赫兹范围与隐蔽目标SAR成像

A. Batra, V. Vu, Yamen Zantah, M. Wiemeler, M. Pettersson, D. Goehringer, T. Kaiser
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引用次数: 4

摘要

在雷达系统中,频率范围被扩展到高频,如太赫兹,以获得亚毫米分辨率。该光谱具有较高的分辨率,但由于波长较短,限制了传播距离和穿透深度。与sub-GHz系统相比,它受到更高的大气吸收的影响。与光学技术相比,雷达技术的主要优势在于穿透性能,如云/烟雾覆盖穿透和探测隐藏物体。然而,太赫兹范围和合成孔径雷达(SAR)对隐蔽目标的成像还没有很好的建立。因此,本文在太赫兹下研究了这一特性。建立了带宽为110 GHz、载频为275 GHz的试验台。成像是对一个非常小的金属物体进行的。首先用实验对亚毫米分辨率进行验证,然后对该目标进行覆盖不同类型材料的距离和SAR成像。用图像重建算法对后向散射数据进行处理,并给出了亚毫米级分辨率和检测结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sub-mm Resolution Indoor THz Range and SAR Imaging of Concealed Object
In radar systems, the frequency range is being extended to high frequencies such as THz for sub-mm resolution. The spectrum offers high resolution but on the contrary, propagation distance and penetration depth are limited because of smaller wavelength. It suffers from higher atmospheric absorption in comparison to sub-GHz systems. In comparison to optical technology, the radar technique majorly benefits with respect to the penetration property such as cloud/smoke cover penetration and detection of concealed objects. However, the THz range and synthetic aperture radar (SAR) imaging of concealed objects are not very well established. Therefore, this paper examines this property at THz. A testbed has been set up with a bandwidth of 110 GHz at a carrier frequency of 275 GHz. The imaging is performed of a very small metal object. Firstly, the sub-mm resolution is validated with the experiment after that the range and SAR imaging are performed in which this object is covered with different types of materials. The backscattered data is processed with the image reconstruction algorithms and the results are presented in this paper with respect to sub-mm resolution and detection.
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