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Stratigraphic absorption compensation of GPR signal based on improved S-transform

机译:基于改进S变换的GPR信号地层吸收补偿

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The loss of the higher frequency components of electromagnetic wave due to soil absorption and attenuation results in GPR signal decrease rapidly in deep areas. High frequency compensation is one of most important ways to improve GPR data resolution. The S-Transform (or ST) has been widely used in digital signal processing since it was proposed. Here, improved S-transform to GPR data has been designed to enhance the deep reflection events. Firstly, GPR signals are transformed to S-transform coefficients trace by trace; then at each time sampling point, the frequency factors depended attenuation are extracted according to the soil layer feature; the S-transform coefficients are weighed by the factors to ensure energy equalization at different time sampling point. Numerical simulated and real GPR data are used for testing the proposal and its validity. According to the time-frequency spectrum analysis before and after ST treatment, almost the same energy distribution in lower frequency range is obtained, and the higher frequency components are obviously increased at deep area. The comparison demonstrates that the reconstructed GPR data from S-transform with appropriate weighting method can implement compensation absorption very well without Q value.
机译:由于土壤吸收和衰减导致电磁波高频分量的损失,导致深部地区的GPR信号迅速下降。高频补偿是提高GPR数据分辨率的最重要方法之一。自从提出以来,S变换(或ST)已广泛用于数字信号处理中。在这里,已经设计了对GPR数据的改进的S变换,以增强深反射事件。首先,将GPR信号逐迹线变换为S变换系数。然后在每个采样点,根据土层特征提取与衰减有关的频率因子。通过这些因素对S变换系数进行加权,以确保在不同时间采样点的能量均衡。数值模拟和实际GPR数据用于测试提案及其有效性。根据ST处理前后的时频频谱分析,在较低的频率范围内获得了几乎相同的能量分布,并且在深处高频成分明显增加。比较表明,采用适当的加权方法从S变换重建的GPR数据可以很好地实现补偿吸收,而无需Q值。

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