On instability mechanisms for inverse problems

H. Koch, Angkana Ruland, M. Salo
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引用次数: 17

Abstract

In this article we present three robust instability mechanisms for linear and nonlinear inverse problems. All of these are based on strong compression properties (in the sense of singular value or entropy number bounds) which we deduce through either strong global smoothing, only weak global smoothing or microlocal smoothing for the corresponding forward operators, respectively. As applications we for instance present new instability arguments for unique continuation, for the backward heat equation and for linear and nonlinear Calderon type problems in general geometries, possibly in the presence of rough coefficients. Our instability mechanisms could also be of interest in the context of control theory, providing estimates on the cost of (approximate) controllability in rather general settings.
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反问题的不稳定性机制
本文给出了线性和非线性逆问题的三种鲁棒不稳定性机制。所有这些都是基于强压缩特性(在奇异值或熵数边界意义上),我们分别通过对应的前向算子的强全局平滑,仅弱全局平滑或微局部平滑来推断。作为应用,我们提出了新的不稳定性参数的唯一延拓,为后向热方程和一般几何的线性和非线性卡尔德隆型问题,可能在粗糙系数的存在。我们的不稳定性机制在控制理论的背景下也很有意义,在相当一般的环境中提供对(近似)可控性成本的估计。
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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