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首页> 外文期刊>IEEE Antennas & Propagation Magazine >A radio-coverage prediction model in wireless communication systems based on physical optics and the physical theory of diffraction
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A radio-coverage prediction model in wireless communication systems based on physical optics and the physical theory of diffraction

机译:基于物理光学和衍射物理理论的无线通信系统的无线电覆盖率预测模型

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In this paper, a two-dimensional (2D) simulation method for the calculation of radio coverage in urban-area sites is presented, based on the analytical methods of physical optics (PO) and the physical theory of diffraction (PTD). The method takes into account the electromagnetic field at the receiving antenna due to first- and higher-order propagation mechanisms. Emphasis is given on the computation of the scattered near or Fresnel-zone field using numerical techniques, since in a typical urban environment, the scattered near or Fresnel-zone field occupies a large percentage of the area under investigation. The high resolution radio-coverage plots are computed by complex vector addition of all of the received signals for several values of the channel parameters. Finally, a comparison of the radio-coverage results obtained through this method with the corresponding results based on different electromagnetic methods and measurements, previously published in the literature, is presented.
机译:本文基于物理光学分析方法(PO)和衍射物理理论(PTD),提出了一种二维(2D)模拟方法,用于计算城市区域的无线电覆盖范围。该方法考虑了由于一阶和高阶传播机制而在接收天线处产生的电磁场。由于在典型的城市环境中,散射的近菲涅尔带场占据了被调查区域的很大一部分,因此重点在于使用数值技术来计算近距离或菲涅耳带区域的场。高分辨率无线电覆盖图是通过对多个信道参数值的所有接收信号进行复数矢量相加来计算的。最后,将通过此方法获得的无线电覆盖范围结果与先前基于文献发表的基于不同电磁方法和测量结果的相应结果进行比较。

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