On an inverse problem of nonlinear imaging with fractional damping

B. Kaltenbacher, W. Rundell
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引用次数: 16

Abstract

This paper considers the attenuated Westervelt equation in pressure formulation. The attenuation is by various models proposed in the literature and characterised by the inclusion of non-local operators that give power law damping as opposed to the exponential of classical models. The goal is the inverse problem of recovering a spatially dependent coefficient in the equation, the parameter of nonlinearity $\kappa(x)$, in what becomes a nonlinear hyperbolic equation with nonlocal terms. The overposed measured data is a time trace taken on a subset of the domain or its boundary. We shall show injectivity of the linearised map from $\kappa$ to the overposed data used to recover it and from this basis develop and analyse Newton-type schemes for its effective recovery.
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含分数阶阻尼的非线性成像反问题
本文考虑了压力公式中的衰减韦斯特维尔特方程。衰减是通过文献中提出的各种模型来实现的,其特征是包含非局部算子,这些算子给出幂律阻尼,而不是经典模型的指数。目标是恢复方程中空间相关系数的逆问题,非线性的参数$\kappa(x)$,变成了一个带有非局部项的非线性双曲方程。叠加的测量数据是在域的子集或其边界上的时间迹。我们将展示从$\kappa$的线性化映射到用于恢复它的叠加数据的注入性,并在此基础上开发和分析牛顿型方案以实现其有效恢复。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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