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Enhancing Electromagnetic Backscattering Responses for Target Detection in the Near Zone of Near-Field-Focused Phased Array Antennas

机译:增强近场聚焦阵列天线近区域近区目标检测的电磁反向散射响应

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摘要

The analysis of electromagnetic (EM) scattering from a target located in the near zone of an electrically large near-field-focused (NFF) array of antennas is presented. The analysis first examined the EM scattering from a metal sphere, attempting to create a reference for comparison with other targets in a fashion analogous to conventional far-field analysis of radar cross section (RCS). Realistic targets were afterward examined and analyzed to exhibit their RCS characteristics. A numerical simulation-based maximization of EM scattering fields for effective target detection in the near zone of antenna was developed, which allows one to obtain a set of optimum element excitation weightings by applying the steepest ascent method (SAM). RCS phenomena were validated by full-wave simulations and experimental measurements to justify the feasibility of the proposed concept.
机译:呈现了位于电力近场聚焦(NFF)天线近区近区域的目标的电磁(EM)散射的分析。该分析首先检查了从金属球体散射的散射,试图以类似于雷达横截面(RCS)的传统远场分析的方式比较的参考。后来检查并分析了现实目标,表现出其RCS特征。开发了一种用于天线近区域有效目标检测的用于有效目标检测的基于数值模拟的最大化,允许通过施加截最陡峭的成本(SAM)来获得一组最佳元件激励权重。通过全波模拟和实验测量验证了RCS现象,以证明提出概念的可行性。

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