Hand-held radar with video positioning system for microwave imaging

V. Razevig, A. Zhuravlev, M. Chizh, S. Ivashov, A. Bugaev
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引用次数: 2

Abstract

Obtaining microwave images of subsurface objects with scanning radar systems requires positioning of the radar antenna within a fraction of the wavelength in the medium. At the frequencies of several gigahertz the positioning of the radar is achieved by a distance measuring wheel, which can be used only on smooth surfaces. In such a positioning system the data acquisition requires collecting data samples along parallel lines to get plan view images. In this paper a hand-held radar equipped with a video-based positioning system is considered. The video-based positioning system, which uses a web-camera and a contrast graphical marker (an AR-marker), enables positioning the radar in 3D with sufficient precision without any constraints on the sampling pattern. The radar position is calculated using correspondence between the physical coordinates of the marker corners and their projections on the web-camera image. Reconstruction of the microwave image is performed by a back projection method which uses 3D coordinates of each data sample. The result of data processing can be presented as a traditional microwave image, or as an overlay to the image of the scene (augmented reality). This way of data visualization removes the problem of radar data remapping from the computer screen to the probed scene. Several application areas of the developed technique are outlined. Among the considered problems are: obtaining radar images of concealed objects under clothing by a hand-held radar scanner and obtaining radar images over uneven surfaces (arched ceilings, columns, statues, natural soil etc.). The first of these applications is illustrated with experimentally obtained results.
手持雷达与视频定位系统的微波成像
用扫描雷达系统获得地下物体的微波图像需要将雷达天线定位在介质波长的一小部分内。在几兆赫兹的频率上,雷达的定位是通过距离测量轮来实现的,它只能在光滑的表面上使用。在这种定位系统中,数据采集需要沿平行线采集数据样本以获得平面视图图像。本文研究了一种配备视频定位系统的手持雷达。基于视频的定位系统,使用网络摄像头和对比图形标记(ar标记),可以在没有任何采样模式限制的情况下,以足够的精度对雷达进行3D定位。雷达位置是使用标记角的物理坐标和它们在网络摄像机图像上的投影之间的对应关系计算的。利用每个数据样本的三维坐标,采用反向投影法对微波图像进行重建。数据处理的结果可以呈现为传统的微波图像,也可以作为场景图像的叠加(增强现实)。这种数据可视化的方式消除了雷达数据从计算机屏幕到探测场景的重新映射问题。概述了该技术的几个应用领域。考虑的问题包括:用手持雷达扫描仪获取衣服下隐藏物体的雷达图像,以及获取凹凸不平表面(拱形天花板、圆柱、雕像、自然土壤等)的雷达图像。第一个应用是用实验结果来说明的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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