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Taming waveform inversion non-linearity through phase unwrapping of the model and objective functions

机译:通过模型和目标函数的相位展开来驯服波形反转非线性

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摘要

Traveltime inversion focuses on the geometrical features of the waveform (traveltimes), which is generally smooth, and thus, tends to provide averaged (smoothed) information of the model. On other hand, general waveform inversion uses additional elements of the wavefield including amplitudes to extract higher resolution information, but this comes at the cost of introducing non-linearity to the inversion operator, complicating the convergence process. We use unwrapped phase-based objective functions in waveform inversion as a link between the two general types of inversions in a domain in which such contributions to the inversion process can be easily identified and controlled. The instantaneous traveltime is a measure of the average traveltime of the energy in a trace as a function of frequency. It unwraps the phase of wavefields yielding far less non-linearity in the objective function than that experienced with conventional wavefields, yet it still holds most of the critical wavefield information in its frequency dependency. However, it suffers from non-linearity introduced by the model (or reflectivity), as reflections from independent events in our model interact with each other. Unwrapping the phase of such a model can mitigate this non-linearity as well. Specifically, a simple modification to the inverted domain (or model), can reduce the effect of the model-induced non-linearity and, thus, make the inversion more convergent. Simple numerical examples demonstrate these assertions.
机译:行程时间反演集中于波形的几何特征(行程时间),该特征通常是平滑的,因此趋向于提供模型的平均(平滑)信息。另一方面,一般的波形反演使用包括振幅的波场的其他元素来提取更高分辨率的信息,但这是以将非线性引入反演算符为代价的,这使收敛过程变得复杂。我们在波形反演中使用基于展开相位的目标函数,作为域中两种通用反演类型之间的链接,在该领域中,对反演过程的这种贡献可以轻松识别和控制。瞬时传播时间是轨迹中能量平均传播时间的量度,它是频率的函数。它解开了波场的相位,使目标函数中的非线性比传统波场所经历的要少得多,但它仍然保留了大多数关键波场信息的频率依赖性。但是,由于模型中独立事件的反射会相互影响,因此模型会引入非线性(或反射率)。解开此类模型的相位也可以缓解这种非线性。具体而言,对倒置域(或模型)的简单修改可以减少模型引起的非线性的影响,从而使倒置更加收敛。简单的数字示例说明了这些主张。

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