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Empirical modeling of nighttime easterly and westerly VLF propagation in the Earth-ionosphere waveguide

机译:地球电离层波导中夜间东风和西风VLF传播的经验模型

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摘要

It has been known for many years that easterly and westerly propagation of VLF in the Earth-ionosphere waveguide is nonreciprocal with the mean attenuation rate to the west being greater than to the east for ground to ground transmissions. It is also true that nighttime propagation to the west is more difficult to accurately predict than is propagation to the east. For example, a simple exponential β = 0.5 km, h’ = 87 km (notation of Wait and Spies (1964)) profile does an excellent job of predicting nocturnal in-flight measurements over the Hawaii-San Diego path but does not accurately predict nighttime propagation over the Hawaii-Wake path. This is partly because propagation to the west is less stable than propagation to the east. In this study, full wave solutions will be used to show that propagation to the west is more sensitive to upper levels of the ionosphere than is propagation to the east. It therefore seems reasonable that propagation to the west is more sensitive to variable regions of the ionosphere than is propagation to the east and that this, at least in part, is responsible for the difficulty of accurately predicting westerly propagation. Comparisons are made between calculations based on empirical electron density profiles and in-flight measurements between Hawaii and San Diego, and Hawaii and Wake.
机译:多年来已经知道,VLF在地球电离层波导中向东和向西传播是不可逆的,对于地面到地面的传输,向西的平均衰减率大于向东的平均衰减率。的确,向西传播的夜间传播比向东传播的传播更难准确预测。例如,简单的指数β= 0.5 km,h'= 87 km(Wait and Spies(1964)的表示法)在预测夏威夷-圣地亚哥路径上的夜间飞行中测量值方面做得非常出色,但不能准确预测夏威夷-苏克路径上的夜间传播。部分原因是,向西的传播比向东的传播不稳定。在这项研究中,将使用全波解来表明,向西传播比向东传播对电离层高层更敏感。因此,向西传播对电离层的可变区域比向东传播更敏感,这似乎是合理的,并且这至少部分地是造成难以准确预测西风传播的原因。基于经验电子密度分布的计算与夏威夷和圣地亚哥以及夏威夷和苏醒之间的飞行中测量之间进行了比较。

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