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Near-earth RF propagation - Path loss and variation with weather

机译:近地球RF传播 - 路径损耗和天气变化

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Most of the current radio frequency propagation analysis is focused on signals travelling well above the earth's surface. A recent surge in low power communication networks having RF signals propagating close to the earth's surface has resulted in some networks using antennas operating at heights less than one metre from the surface. The resultant near ground RF propagation and the effect of obstructions that impinge upon the first Fresnel zone for short ranges is not well understood. It is unclear as to which propagation model to apply in this situation. Knowledge of the propagation conditions is essential to the design of radio communications for distributed radars such as those used for perimeter protection. DSTO is investigating RF propagation and evaluating the effects of weather for these propagation conditions. Propagation loss measurements were made at UHF frequencies using antennas set at heights varying between 0.3 m and 1.5 m in rural line of sight environments. Measured RF propagation loss results for these conditions are in very good agreement with the two-ray RF propagation model. In addition, the dew and cloud coverage can significantly affect the RF propagation loss.
机译:大多数当前的射频传播分析专注于在地球表面上方行驶的信号。最近在具有靠近地球表面传播的RF信号的低功率通信网络的浪涌导致一些网络使用从表面小于一米的高度工作的天线。在短程范围内撞击第一菲涅耳区的近地接地RF传播和障碍物的效果并不充分理解。目前尚不清楚在这种情况下适用的传播模型。对传播条件的知识对于用于分布式雷达的无线电通信的设计是必不可少的,例如用于周边保护的雷达。 DSTO正在研究RF传播,评估天气对这些传播条件的影响。在UHF频率下使用在乡村视线环境中的高度设定的天线在高度范围内的天线进行传播损耗测量。测量这些条件的RF传播损失结果与双射线RF传播模型非常好。此外,露水和云覆盖可能会显着影响RF传播损耗。

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