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Experimental Validation of a Microwave Imaging Method for Shallow Buried Target Detection by Under-Sampled Data and a Non-Cooperative Source

机译:浅埋埋地靶检测微波成像方法的实验验证及非合作源

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摘要

In microwave imaging, it is often of interest to inspect electrically large spatial regions. In these cases, data must be collected over a great deal of measurement points which entails long measurement time and/or costly, and often unfeasible, measurement configurations. In order to counteract such drawbacks, we have recently introduced a microwave imaging algorithm that looks for the scattering targets in terms of equivalent surface currents supported over a given reference plane. While this method is suited to detect shallowly buried targets, it allows one to independently process all frequency data, and hence the source and the receivers do not need to be synchronized. Moreover, spatial data can be reduced to a large extent, without any aliasing artifacts, by properly combining single-frequency reconstructions. In this paper, we validate such an approach by experimental measurements. In particular, the experimental test site consists of a sand box in open air where metallic plate targets are shallowly buried a (few cm) under the air/soil interface. The investigated region is illuminated by a fixed transmitting horn antenna, whereas the scattered field is collected over a planar measurement aperture at a fixed height from the air-sand interface. The transmitter and the receiver share only the working frequency information. Experimental results confirm the feasibility of the method.
机译:在微波成像中,检查电动大空间区域通常感兴趣。在这些情况下,必须在大量的测量点上收集数据,这些点将长度测量点和/或昂贵,并且通常是不可行的,测量配置。为了抵消这些缺点,我们最近引进了一个微波成像算法,查找该散射目标在等效表面电流而言支持在给定的参考平面。虽然该方法适于检测浅埋目标,但它允许一个独立地处理所有频率数据,因此源和接收器不需要同步。此外,通过适当地组合单频重建,可以在很大程度上减小空间数据,而没有任何叠种伪影。在本文中,我们通过实验测量验证了这种方法。特别是,实验试验部位由露天的沙箱组成,其中金属板靶在空气/土界面下浅埋在(少厘米)。所研究的区域由固定的透射喇叭天线照射,而散射场在从空气砂接口的固定高度处通过平面测量孔收集。发送器和接收器仅共享工作频率信息。实验结果证实了该方法的可行性。

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