皮尔逊积矩相关系数
相关系数
反演(地质)
相关性
费希尔变换
接头(建筑物)
遥感
地质学
统计
数学
地震学
建筑工程
几何学
工程类
构造学
作者
Qicheng Zhao,Yuyue Zhang,Zhiqin Zhao,Zaiping Nie
出处
期刊:IEEE Transactions on Geoscience and Remote Sensing
[Institute of Electrical and Electronics Engineers]
日期:2024-01-01
卷期号:: 1-1
标识
DOI:10.1109/tgrs.2024.3404392
摘要
The electromagnetic (EM) inverse scattering problems (ISPs) exhibit strong nonlinearity, making it a challenge to reconstruct relative permittivity of strong scatterers with high quality. Joint inversion can leverage the satisfactory solution obtained from acoustic inversion to mitigates the impact of strong nonlinearity on EM inversion. However, how to improve the precision of reconstructing the internal electrical parameter distribution through this kind of joint inversion approach is still a challenge. Aim to improve the quality of reconstruction, a new joint inversion method based on the framework of the subspace-based optimization method (SOM) is proposed in this paper. This new method utilizes the Pearson correlation coefficient (PCC) to construct structural similarity constraints, thereby enhancing the linear correlation between EM and acoustic parameters. In inversion process, all data obtained from acoustic inversion can offer effective constraints. In order to improve convergence speed and stability of the proposed method, a constraint which is consisted of CGF is induced in the object function. And by utilizing the results of the results of acoustic inversion, the inversion domain can be further refined, giving rise to better computational efficiency. With these treatments, the proposed method has better performance in both accuracy and efficiency. The effectiveness and advantages of the proposed method is validated through several numerical examples.
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