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Reverberation Chamber Characterization Using Enhanced Backscatter Coefficient Measurements.

机译:使用增强的后向散射系数测量来进行混响室表征。

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摘要

The primary focus of this thesis is to evaluate the use of the enhanced backscatter coefficient as a quantity for characterizing the spatial uniformity of the reverberation chamber (RC). An RC is a statistical measurement facility constructed from a large metallic hallow cavity containing an irregularly shaped paddle stirrer for mixing electromagnetic fields to obtain many statistically independent samples. The average power, measured from antennas placed inside of the RC, is ideally uniform over any chosen antenna position and orientation within the RC's working volume. Spatial uniformity is a fundamental assumption to all RC theoretical analysis, and thus the spatial dependence of the RC is directly related to the uncertainty of the measurements. Comparisons are made with standard multiple-configuration measurements (different antenna positions) to show that comparable values of standard deviation caused by spatial non-uniformity are obtained using the transfer function (as typically used) and the enhanced backscatter coefficient. Additionally, it is shown that the enhanced backscatter coefficient for an ideal RC is theoretically a constant value of 2, but has variation over frequency when measured. This variation over frequency is used in a single-configuration measurement to obtain values of standard deviation that are nearly the same as those found using multiple-configuration measurements. This is possible because the statistical variation of the reverberation chamber is similar over frequency and over different measurement positions. Furthermore, data is presented from various tests showing that the value of the enhanced backscatter coefficient is sensitive to calibration issues, and the improper use of frequency stirring. This helps to justify that the enhanced backscatter coefficient can be used as a benchmark quantity for determining if computations from the RC measured data are useful and can be trusted. One- and two-dimensional Green's function models are also used to explore the enhanced backscatter coefficient value for different types of stirring mechanisms. Lastly, application of the enhanced backscatter coefficient for determining the total efficiency of an antenna measured in the reverberation chamber is presented. Along with the estimates of total efficiency, the confidence interval of the results is computed from the frequency variation of the enhanced backscatter coefficient.
机译:本文的主要重点是评估增强后向散射系数作为表征混响室(RC)空间均匀性的量的使用。 RC是一种统计测量设备,由大型金属空心腔构成,其中包含不规则形状的桨式搅拌器,用于混合电磁场以获得许多统计上独立的样本。从放置在RC内部的天线测得的平均功率在RC工作空间内任何选定的天线位置和方向上都是理想的。空间均匀性是所有RC理论分析的基本假设,因此RC的空间依赖性与测量的不确定性直接相关。与标准的多种配置测量(不同的天线位置)进行了比较,显示出使用传递函数(通常使用)和增强的反向散射系数可以获得由空间不均匀性引起的标准偏差的可比较值。此外,还表明,理想RC的增强后向散射系数理论上为常数2,但在测量时随频率变化。在单配置测量中使用这种随频率的变化以获得与使用多配置测量发现的标准偏差值几乎相同的标准偏差值。这是可能的,因为混响室的统计变化在频率和不同测量位置上相似。此外,从各种测试中获得的数据表明,增强的反向散射系数的值对校准问题和频率搅拌的不当使用很敏感。这有助于证明增强的反向散射系数可以用作确定来自RC测量数据的计算是否有用并且可以信任的基准量。一维和二维格林函数模型还用于探索不同类型搅拌机制的增强后向散射系数值。最后,介绍了增强后向散射系数在确定混响室内测得的天线总效率中的应用。连同对总效率的估计,从增强的反向散射系数的频率变化中计算出结果的置信区间。

著录项

  • 作者

    Dunlap, Colton Ray.;

  • 作者单位

    University of Colorado at Boulder.;

  • 授予单位 University of Colorado at Boulder.;
  • 学科 Electromagnetics.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 165 p.
  • 总页数 165
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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