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On the Coherence Relationship between Measurement Matrices and Equivalent Radiation Sources in Microwave Computational Imaging Applications

机译:微波计算成像应用中测量矩阵与等效辐射源的相干关系

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摘要

In recent years, computational imaging, which encodes scene information into a set of measurements, has become a research focus in the field of microwave imaging. As with other typical inverse problems, the key challenge is to reduce the mutual coherences in the measurement matrix which is composed of measurement modes. Since the modes are synthesized by antennas, there is a great deal of interest in the antenna optimization for the reduction. The mechanism underlying the generation of the coherences is critical for the optimization; however, relevant research is still inadequate. In this paper, we try to address the research gap by relating the coherences to the antennas’ equivalent radiation sources via spectral Green’s dyad. We demonstrate that the coherences in the measurement matrix are dependent on the spatial spectral coherences of the sources, while in this relationship the imaging scenario acts as a spectral low-pass filter. Increasing the imaging range narrows the spectral constraint, which eventually increases the coherences in the measurement matrix. Full-wave electromagnetic simulations are performed for validation. We hope that our work provides a possible direction for the antenna optimization in microwave computational imaging (MCI) applications and motivates further research in this field.
机译:近年来,将场景信息编码为一组测量的计算成像已成为微波成像领域的研究焦点。与其他典型的逆问题一样,关键挑战是减少由测量模式组成的测量矩阵中的相互相干性。由于该模式由天线合成,因此对减少的天线优化存在很大的兴趣。产生一致性的机制对于优化至关重要;但是,相关研究仍然不足。在本文中,我们尝试通过光谱绿色二元将透射天线的等效辐射源与天线相当的相结合来解决研究差距。我们证明测量矩阵中的相处取决于源的空间频谱相合,而在这种关系中,成像场景充当光谱低通滤波器。增加成像范围缩小光谱约束,最终增加测量矩阵中的相干性。进行验证进行全波电磁模拟。我们希望我们的工作为微波计算成像(MCI)应用中的天线优化提供了可能的方向,并激励进一步研究该领域。

著录项

  • 作者

    Jian Guan; Weidong Chen;

  • 作者单位
  • 年度 2019
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  • 原文格式 PDF
  • 正文语种 eng
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