A Stable Iterative Direct Sampling Method for Elliptic Inverse Problems with Partial Cauchy Data
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arXiv
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| Autori principali: | , , |
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| Natura: | Preprint |
| Pubblicazione: |
2025
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| _version_ | 1866914150916030464 |
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| author | Jin, Bangti Wang, Fengru Zou, Jun |
| author_facet | Jin, Bangti Wang, Fengru Zou, Jun |
| contents | We develop a novel iterative direct sampling method (IDSM) for solving linear or nonlinear elliptic inverse problems with partial Cauchy data. It integrates three innovations: a data completion scheme to reconstruct missing boundary information, a heterogeneously regularized Dirichlet-to-Neumann map to enhance the near-orthogonality of probing functions, and a stabilization-correction strategy to ensure the numerical stability. The resulting method is remarkably robust with respect to measurement noise, is flexible with the measurement configuration, enjoys provable stability guarantee, and achieves enhanced resolution for recovering inhomogeneities. Numerical experiments in electrical impedance tomography, diffuse optical tomography, and cardiac electrophysiology show its effectiveness in accurately reconstructing the locations and geometries of inhomogeneities. |
| format | Preprint |
| id |
arxiv_https___arxiv_org_abs_2511_08171 |
| institution | arXiv |
| publishDate | 2025 |
| record_format | arxiv |
| spellingShingle | A Stable Iterative Direct Sampling Method for Elliptic Inverse Problems with Partial Cauchy Data Jin, Bangti Wang, Fengru Zou, Jun Numerical Analysis We develop a novel iterative direct sampling method (IDSM) for solving linear or nonlinear elliptic inverse problems with partial Cauchy data. It integrates three innovations: a data completion scheme to reconstruct missing boundary information, a heterogeneously regularized Dirichlet-to-Neumann map to enhance the near-orthogonality of probing functions, and a stabilization-correction strategy to ensure the numerical stability. The resulting method is remarkably robust with respect to measurement noise, is flexible with the measurement configuration, enjoys provable stability guarantee, and achieves enhanced resolution for recovering inhomogeneities. Numerical experiments in electrical impedance tomography, diffuse optical tomography, and cardiac electrophysiology show its effectiveness in accurately reconstructing the locations and geometries of inhomogeneities. |
| title | A Stable Iterative Direct Sampling Method for Elliptic Inverse Problems with Partial Cauchy Data |
| topic | Numerical Analysis |
| url | https://arxiv.org/abs/2511.08171 |