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首页> 外文期刊>Radio Science >Influence of nonhomogeneous Earth on the rms phase error and beam-pointing errors of large, sparse high-frequency receiving arrays
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Influence of nonhomogeneous Earth on the rms phase error and beam-pointing errors of large, sparse high-frequency receiving arrays

机译:非均质地球对大型稀疏高频接收阵列的均方根相位误差和波束指向误差的影响

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摘要

The performance of ground-based high-frequency (HF) receiving arrays is reduced when the array elements have electrically small ground planes. The array rms phase error and beam-pointing errors, caused by multipath rays reflected from a nonhomogeneous Earth, are determined for a sparse array of elements that are modeled as Hertzian dipoles in close proximity to Earth with no ground planes. Numerical results are presented for cases of randomly distributed and systematically distributed Earth nonhomogeneities where one-half of vertically polarized array elements are located in proximity to one type of Earth and the remaining half are located in proximity to a second type of Earth. The maximum rms phase errors, for the cases examined, are 18° and 9° for randomly distributed and systematically distributed nonhomogeneities, respectively. The maximum beampointing errors are 0 and 0.3 beam widths for randomly distributed and systematically distributed nonhomogeneities, respectively.
机译:当阵列元件的电气接地平面较小时,会降低基于地面的高频(HF)接收阵列的性能。对于由稀疏阵列组成的均方根相位误差和波束指向误差,该均方根误差和光束指向误差是由稀疏的元素阵列确定的,这些元素被建模为非常接近地球且没有接地层的赫兹偶极子。对于随机分布和系统分布的地球非均质性的情况,给出了数值结果,其中一半的垂直极化阵列元素位于一种地球附近,而其余的一半位于第二种地球附近。对于所检查的情况,最大均方根相位误差对于随机分布和系统分布的非均匀性分别为18°和9°。对于随机分布和系统分布的非均匀性,最大波束指向误差分别为0和0.3波束宽度。

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