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首页> 外文期刊>Journal of Differential Equations >Recovering complex elastic scatterers by a single far-field pattern
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Recovering complex elastic scatterers by a single far-field pattern

机译:通过单个远场模式恢复复杂的弹性散射体

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摘要

We consider the inverse scattering problem of reconstructing multiple impenetrable bodies embedded in an unbounded, homogeneous and isotropic elastic medium. The inverse problem is nonlinear and ill-posed. Our study is conducted in an extremely general and practical setting: the number of scatterers is unknown in advance; and each scatterer could be either a rigid body or a cavity which is not required to be known in advance; and moreover there might be components of multiscale sizes presented simultaneously. We develop several locating schemes by making use of only a single far-field pattern, which is widely known to be challenging in the literature. The inverse scattering schemes are of a totally "direct" nature without any inversion involved. For the recovery of multiple small scatterers, the nonlinear inverse problem is linearized and to that end, we derive sharp asymptotic expansion of the elastic far-field pattern in terms of the relative size of the cavities. The asymptotic expansion is based on the boundary-layer-potential technique and the result obtained is of significant mathematical interest for its own sake. The recovery of regular-size/extended scatterers is based on projecting the measured far-field pattern into an admissible solution space. With a local tuning technique, we can further recover multiple multiscale elastic scatterers.
机译:我们考虑重构嵌入无界,均匀且各向同性的弹性介质中的多个不可渗透体的逆散射问题。反问题是非线性且不适定的。我们的研究是在非常通用和实际的环境中进行的:散射体的数量事先未知;每个散射体可以是刚体,也可以是不需要事先知道的空腔;而且可能同时显示多尺度大小的组件。我们仅利用单个远场模式开发了几种定位方案,这在文献中是众所周知的挑战。反向散射方案完全是“直接”性质,不涉及任何反向。为了恢复多个小散射体,将非线性反问题线性化,并为此目的,根据型腔的相对大小,得出了弹性远场模式的急剧渐近扩展。渐近展开是基于边界层势技术的,并且出于其自身的原因,所获得的结果具有重要的数学意义。常规尺寸/扩展散射体的恢复基于将测得的远场模式投影到允许的解决方案空间中。利用局部调整技术,我们可以进一步恢复多个多尺度弹性散射体。

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