一种新的基于质心频率的探地雷达衰减估计算法

S. Lauro, J. Baniamerian, E. Pettinelli, E. Mattei, B. Cosciotti
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引用次数: 0

摘要

电磁波在有耗介质中传播时,其振幅会衰减。通常以损耗正切为特征的衰减取决于构成材料的电磁特性、介质结构和发射信号的标称工作频率。因此,评估电磁波衰减可以深入了解材料的本构参数。假设Ricker小波作为源小波,推导出频率与双向行程时间、损耗正切和标称频率有关的非线性方程,然后通过概率方法反演求解该方程以恢复所寻求的模型参数。将该方法应用于意大利埃特纳火山的真实数据集。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A New Centroid Frequency-Based Algorithm to Estimate the Attenuation of Ground Penetrating Radar
Summary Amplitude of electromagnetic (EM) waves is attenuated when propagating in a lossy medium. The attenuation which is commonly characterized by the loss tangent depends on the electromagnetic properties of the composing materials, medium structure and the nominal operating frequency of the transmitted signal. Therefore, evaluating the EM waves attenuation can give insights to the material’s constitutive parameters. Assuming a Ricker wavelet as the source wavelet, a nonlinear equation relating the frequency to two-way travel time, loss tangent and nominal frequency is derived that is then solved by probabilistic approach inversion to recover the sought model parameters. The proposed approach is applied into a real dataset acquired on Mount Etna volcano, Italy.
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