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Improving the Reconstruction Accuracy of Inversion Strategies Through Energetic Constraints

机译:通过能量约束提高反演策略的重构精度

摘要

Microwave imaging techniques are widely investigated in many applied sciences such as the subsurface prospecting [1] and the medical diagnosis [2]. Unfortunately, when inverse scattering approaches are considered, the drawbacks of non‐linearity and ill‐posedness [3] have unavoidably to be dealt with. Therefore, the problem at hand is usually recast as the minimization of a suitable cost function to be properly minimized in order to find the optimal solution. Such a cost function is usually defined by two discrepancy terms based on the knowledge of the scattered field measured in a suitable observation region and of the incident field in the investigation region. Moreover, further regularization terms have been studied and successfully applied in order to enhance the quality of the reconstructions (e.g., [4][5]). In such a framework, this contribution presents a new constraint based on the conservation of energy to improve the reconstruction accuracy of inverse scattering procedures.
机译:微波成像技术已在许多应用科学中得到广泛研究,例如地下勘探[1]和医学诊断[2]。不幸的是,当考虑反向散射方法时,不可避免地要解决非线性和不适的缺点[3]。因此,眼前的问题通常会重现为适当的成本函数的最小化,以使其适当地最小化,从而找到最佳解决方案。通常基于在合适的观察区域中测量的散射场和调查区域中的入射场的知识,由两个差异项来定义这种成本函数。此外,为了提高重建质量,已研究并成功应用了更多正则化项(例如[4] [5])。在这样的框架中,这种贡献基于能量守恒提出了新的约束条件,以提高逆散射程序的重建精度。

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