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首页> 外文期刊>Geoscience and Remote Sensing, IEEE Transactions on >Improvement of Stepped-Frequency Continuous Wave Ground-Penetrating Radar Cross-Range Resolution
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Improvement of Stepped-Frequency Continuous Wave Ground-Penetrating Radar Cross-Range Resolution

机译:步进频率连续波探地雷达跨距分辨率的提高

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This paper presents some experimental results obtained with newly developed stepped-frequency continuous wave (SFCW) ground-penetrating radar in a frequency range from 400 to 4845 MHz. This paper describes the procedures to remove the delays within the transmitter, the receiver, and the antenna system and analyzes the experimental results obtained after processing the measured data. The measured system footprint and the experimental results show that using an ultrawideband (UWB) Archimedean spiral antenna decreases the coupling signal but does not provide the needed cross-range resolution. Based on the measured dimensions of the footprint, a synthetic aperture procedure is used to improve the radar cross-range resolution from around 60 cm to about 6 cm. This paper shows the ability of the radar to detect dielectric objects and to exhibit their shape as it works with circularly polarized waves. What makes this paper different from prior work, which presents some experiments using a vector network analyzer set up to work as an SFCW radar, is that the data were acquired with a real system working with circular polarization and using two UWB Archimedean spirals. The calibration procedures as well as the synthetic aperture procedure were developed and validated based on measured data with the SFCW radar.
机译:本文介绍了使用新开发的频率从400到4845 MHz的步进频率连续波(SFCW)探地雷达获得的一些实验结果。本文介绍了消除发射机,接收机和天线系统中的延迟的程序,并分析了在处理测量数据后获得的实验结果。测量的系统覆盖区和实验结果表明,使用超宽带(UWB)阿基米德螺旋天线会降低耦合信号,但不能提供所需的跨范围分辨率。基于足迹的测量尺寸,使用合成孔径程序将雷达跨范围分辨率从大约60 cm提高到大约6 cm。本文展示了雷达在检测圆极化波时能够检测介电物体并展示其形状的能力。使得本文与先前工作不同的是,该工作使用设置为SFCW雷达的矢量网络分析仪进行了一些实验,该数据是通过使用圆极化的真实系统并使用两个UWB阿基米德螺旋线采集的。基于SFCW雷达的测量数据,开发并验证了校准程序以及合成孔径程序。

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