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A Novel 24 GHz One-Shot, Rapid and Portable Microwave Imaging System

机译:新颖的24 GHz一键式快速便携式微波成像系统

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摘要

Development of microwave and millimeter wave imaging systems has received significant attention in the past decade. Signals at these frequencies penetrate inside of dielectric materials and have relatively small wavelengths. Thus. imaging systems at these frequencies can produce images of the dielectric and geometrical distributions of objects. Although there are many different approaches for imaging at these frequencies. they each have their respective advantageous and limiting features (hardware. reconstruction algorithms). One method involves electronically scanning a given spatial domain while recording the coherent scattered field distribution from an object. Consequently. different reconstruction or imaging techniques may be used to produce an image (dielectric distribution and geometrical features) of the object. The ability to perform this accurate~v and fast can lead to the development of a rapid imaging system that can be used in the same manner as a video camera. This paper describes the design of such a system. operating at 2-1 GHz. using modulated scatterer technique applied to 30 resonant slots in a prescribed measurement domain.
机译:在过去的十年中,微波和毫米波成像系统的开发受到了广泛的关注。这些频率下的信号会穿透介电材料的内部,并且具有相对较小的波长。从而。在这些频率下的成像系统可以产生物体的介电和几何分布的图像。尽管在这些频率下有许多不同的成像方法。它们各自具有各自的优势和局限性(硬件,重建算法)。一种方法涉及电子扫描给定的空间域,同时记录来自物体的相干散射场分布。所以。可以使用不同的重建或成像技术来产生对象的图像(介电分布和几何特征)。快速准确地执行此功能的能力可以导致快速成像系统的发展,该系统可以与摄像机相同的方式使用。本文介绍了这种系统的设计。工作于2-1 GHz。使用调制散射体技术,将其应用于规定的测量域中的30个谐振槽。

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