arXiv:2605.10081eess.IV2026-05被引 2

利用反射路径提升微波成像分辨率,实现隐藏目标成像

Polarization-Aware Ray-Tracing Enhanced Back-Projection Algorithm for Microwave Imaging in Complex Multipath Environments

论文配图:Polarization-Aware Ray-Tracing Enhanced Back-Projection Algorithm for Microwave Imaging in Complex Multipath Environments
图 1 · 摘自论文原文
  • 将射线追踪与反投影结合,自动识别反射路径
  • 通过极化相位补偿,提升图像质量并扩展成像范围
  • 无需新增测量即可等效增大孔径,适合复杂环境应用

针对复杂多路径环境中的微波成像问题,提出一种射线追踪增强型反投影算法(RT-BPA)。通过将射线追踪技术融入广义反投影框架,该方法在视距路径受阻时,可利用反射路径对隐藏目标成像,拓展了传统反投影算法的应用边界。同时,考虑反射路径相当于虚拟增大天线孔径,无需额外测量即可提升成像分辨率。关键在于引入电磁波的矢量特性,进行极化依赖的相位补偿,克服了标量场模型忽略极化效应的局限。算法采用射击与弹跳射线(SBR)框架,相比现有方法中人工路径评估更具灵活性。

原文摘要 · Abstract (English)

A ray-tracing (RT) enhanced back-projection algorithm (RT-BPA) for microwave imaging in multipath environments is presented. By tightly incorporating the concept of ray-tracing into a generalized version of traditional BPA, this method ensures improved image quality by addressing two important issues. First, when the line-of-sight (LOS) path is obstructed, reflected paths, if available, enable imaging of hidden targets, which extends the applicability of the standard BPA beyond its normal use case. Second, the consideration of reflected ray-paths is equivalent to virtually increasing the aperture size, thus, improving image resolution without requiring new measurements. A key factor in achieving these advancements is the consideration of the vector nature of electromagnetic waves with polarization-dependent phase compensation, which is often ignored when employing a scalar-wave based formulation of the electromagnetic vector field. In addition, the presented method employs a shooting and bouncing rays (SBR) framework, offering better flexibility compared to manual path evaluation in existing RT-BPAs.

微波成像射线追踪多路径反投影

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