IEEE Trans Ultrason Ferroelectr Freq Control. 2022 May;69(5):1775-1786. doi: 10.1109/TUFFC.2022.3163906. Epub 2022 Apr 27.
A Green's function in an acoustic medium can be retrieved from reflection data by solving a multidimensional Marchenko equation. This procedure requires a priori knowledge of the initial focusing function, which can be interpreted as the inverse of a transmitted wavefield as it would propagate through the medium, excluding (multiply) reflected waveforms. In practice, the initial focusing function is often replaced by a time-reversed direct wave, which is computed with help of a macro velocity model. Green's functions that are retrieved under this (direct-wave) approximation typically lack forward-scattered waveforms and their associated multiple reflections. We examine whether this problem can be mitigated by incorporating transmission data. Based on these transmission data, we derive an auxiliary equation for the forward-scattered components of the initial focusing function. We demonstrate that this equation can be solved in an acoustic medium with mass density contrast and constant propagation velocity. By solving the auxiliary and Marchenko equation successively, we can include forward-scattered waveforms in our Green's function estimates, as we demonstrate with a numerical example.
在声学介质中,可以通过求解多维 Marchenko 方程从反射数据中获取格林函数。此过程需要先验知识的初始聚焦函数,它可以解释为穿过介质的传播波场的逆(多重)反射波形。在实践中,初始聚焦函数通常由时间反转直达波代替,该直达波可以借助宏观速度模型来计算。在这种(直达波)近似下,获取的格林函数通常缺乏前向散射波形及其相关的多次反射。我们研究了通过包含透射数据是否可以减轻这个问题。基于这些透射数据,我们推导出初始聚焦函数的前向散射分量的辅助方程。我们证明了在具有质量密度对比度和恒定传播速度的声学介质中可以求解该辅助方程。通过依次求解辅助方程和 Marchenko 方程,我们可以将前向散射波形包含在我们的格林函数估计中,我们用一个数值例子证明了这一点。