arXiv:2410.06465eess.IV2024-10被引 5

用算子反演提升微波成像精度,尤其适合不规则采样数据。

On the Solution of Linearized Inverse Scattering Problems in Near-Field Microwave Imaging by Operator Inversion and Matched Filtering

  • 通过算子反演而非传统匹配滤波进行成像
  • 在不规则网格和截断数据下仍保持高聚焦与准确性
  • 适合需要鲁棒成像的实验或测量场景

微波成像通常基于线性化逆散射问题,采用匹配滤波算法,即对观测数据应用前向散射算子的伴随算子。本文提出一种更严格的前向散射算子显式反演方法,适用于准单静态成像场景,基于平面波表示及Weyl恒等式,并结合分层加速算法。通过正则化迭代求解线性系统,支持不规则观测与完整探头校正。空间成像时可引入低通滤波以减少伪影。文中还提出了对应的谱反投影算法与空间反投影算法,配合改进的聚焦算子,对多种仿真与实测数据进行了分析比较。结果表明,反源解法在鲁棒性、聚焦能力与图像精度上普遍优于伴随算子方法,尤其在不规则采样网格、非理想或截断观测数据条件下,经严格定量评估验证了其优越性。

原文摘要 · Abstract (English)

Microwave imaging is commonly based on the solution of linearized inverse scattering problems by matched filtering algorithms, i.e., by applying the adjoint of the forward scattering operator to the observation data. A more rigorous approach is the explicit inversion of the forward scattering operator, which is performed in this work for quasi-monostatic imaging scenarios based on a planar plane-wave representation according to the Weyl-identity and hierarchical acceleration algorithms. The inversion is achieved by a regularized iterative linear system of equations solver, where irregular observations as well as full probe correction are supported. In the spatial image generation low-pass filtering can be considered in order to reduce imaging artifacts. A corresponding spectral backprojection algorithm and a spatial back-projection algorithm together with improved focusing operators are also introduced and the resulting image generation algorithms are analyzed and compared for a variety of examples, comprising both simulated and measured observation data. It is found that the inverse source solution generally performs better in term of robustness, focusing capabilities, and image accuracy compared to the adjoint imaging algorithms either operating in the spatial or spectral domain. This is especially demonstrated in the context of irregular sampling grids with non-ideal or truncated observation data and by evaluating all reconstruction results based on a rigorous quantitative analysis.

微波成像逆散射算子反演

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