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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Single-Frequency Imaging and Material Characterization Using Reconfigurable Reflectarrays
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Single-Frequency Imaging and Material Characterization Using Reconfigurable Reflectarrays

机译:使用可重构反射阵列的单频成像和材料特性

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摘要

Conventional security screening systems cannot operate in real time and often suffer from false alarms due to the profile-only imaging without further analysis on the object material properties. Reflectarrays were recently proposed as devices capable of performing real-time security screening using a single-frequency radar signal. This article presents first a physical optics (PO)-based simulation method to facilitate the design of a multireflectarray system. Then, an object material characterization method using geometrical optics (GO) is derived for such a system. The characterization process not only retrieves the complex relative permittivity of the object but also improves its profile reconstruction in terms of a more accurate thickness. Both simulations and experiments are carried out to verify the effectiveness and efficiency of the proposed methods. Primary results show great potentials for security screening, especially in scenarios where the inspection of human bodies for threat materials, such as narcotics and explosives, is required.
机译:传统的安全筛选系统不能实时运行,并且由于仅限于轮廓的成像而经常遭受误报,而无需进一步分析对象材料属性。最近提出了反射阵列作为能够使用单频雷达信号执行实时安全筛选的设备。本文介绍了基于物理光学器件(PO)的仿真方法,以便于设计Multiflectarray系统。然后,导出使用几何光学器件(GO)的对象材料表征方法(GO)以用于这种系统。表征过程不仅检索物体的复杂相对介电常数,而且还可以在更精确的厚度方面改善其轮廓重建。进行模拟和实验,以验证所提出的方法的有效性和效率。主要结果表明了安全筛查的巨大潜力,特别是在需要威胁材料的人体,例如毒品和炸药等方案中的情景。

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