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Spectral absorption of spatial and temporal ground penetrating radar signals by water in construction materials

机译:建筑材料中水对时空地面穿透雷达信号的光谱吸收

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This paper studies the spatial and temporal spectral absorption of reflector signals of a 1.5 GHz ground penetrating radar (CPR) during a drying process of a brickwall from initial wet to later dry state. The non-stationary GPR signals were processed with short time-Fourier transform (STFT) and wavelet transform (WT) in a novel spatial-time-frequency (STF) domain. Spatial distribution of peak frequency at the direct wave (DW) across the antenna and a backwall reflection was studied to characterize the mechanism of spectral absorption of GPR wave. Results from WT were shown to be more preferred to those from STFT because the WT offers multiple resolutions to cope with both low and high frequency components in GPR wavelets but STFT does not. In addition to the traditional GPR signal interpretation in time-domain and our previous works on time-frequency domain, the analysis method operated in the STF domain provides another possibility of material characterization by GPR in large and field scale.
机译:本文研究了1.5 GHz探地雷达(CPR)在从初始潮湿状态到后来干燥状态的干燥过程中反射器信号的时空光谱吸收。在一个新颖的时空频率(STF)域中,通过短时傅立叶变换(STFT)和小波变换(WT)处理了非平稳GPR信号。研究了跨天线的直接波(DW)的峰值频率和后壁反射的空间分布,以表征GPR波的频谱吸收机制。 WT的结果显示出比STFT的结果更优选,因为WT提供了多种分辨率来应对GPR小波中的低频和高频分量,但STFT却没有。除了在时域中进行传统的GPR信号解释以及我们先前在时频域中进行的工作以外,在STF域中运行的分析方法还提供了另一种可能性,即可以在大范围和大范围内通过GPR进行材料表征。

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