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Spaced directive antennas for mobile communications by the Fourier transform method

机译:傅立叶变换方法在移动通信中使用的定距定向天线

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The Fourier relations between the channel transfer function and scattering distribution can apply to personal and mobile communications where multipath is a prevalent phenomena. In this paper, the transform relations are reviewed and interpreted for the mobile radio channel. The effective scattering distribution is the vector product of the antenna pattern and the incident waves and is a scalar function of angle and delay time. The space base-band frequency correlation function transforms with the averaged power of the effective scattering distribution. If the angular power density marginal of the effective scattering distribution is known, then the transform relations can be used for configuring antennas for spatial diversity. Similarly, if the delay time marginal is known, then conditions for frequency diversity are available. The two-dimensional (2-D) transform gives a convenient route for assessing tradeoffs between combined frequency and space diversity. Using modeled distributions, solutions are given for spaced directive antennas and an example is discussed for the space-frequency tradeoff.
机译:信道传递函数和散射分布之间的傅立叶关系可以应用于多路径是普遍现象的个人和移动通信。本文对移动无线电信道的变换关系进行了回顾和解释。有效散射分布是天线方向图和入射波的矢量积,并且是角度和延迟时间的标量函数。空间基带频率相关函数根据有效散射分布的平均功率进行变换。如果已知有效散射分布的角功率密度边际,则可以使用变换关系为空间分集配置天线。同样,如果延迟时间裕量已知,则频率分集条件可用。二维(2-D)转换为评估组合频率和空间分集之间的折衷提供了一条便利的途径。使用建模的分布,给出了间隔定向天线的解决方案,并讨论了空间频率折衷的示例。

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