首页> 外文会议>HF Radio Systems and Techniques, 1991., Fifth International Conference on >Ionospheric Faraday rotation signatures in the space-time-frequency domain
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Ionospheric Faraday rotation signatures in the space-time-frequency domain

机译:时空频域中的电离层法拉第旋转签名

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HF skywave radars rely on the ionosphere to propagate radio signals to distant regions of the Earth's surface and back. The ionosphere exhibits variability over a wide range of spatial and temporal scales, and these variations impose characteristic transformations on the incident radar signals. The author confines his attention to the changes in polarisation during skywave propagation, examining the two-way propagation characteristics that relate to the radar observation process, as well as the one-way characteristics of interest to HF communications. The investigation reported is based mainly on measurements carried out using the JINDALEE radar system in Central Australia, together with orthogonally-polarised repeaters which were located at a range of some 1250 km. In addition, mathematical modelling of propagation and scattering processes has been carried out to validate and extend the experimental results.
机译:HF天波雷达依靠电离层将无线电信号传播到地球表面的遥远区域并返回。电离层在大范围的空间和时间尺度上表现出可变性,这些变化对入射的雷达信号施加了特征变换。作者将注意力集中在天波传播过程中的极化变化上,研究与雷达观测过程相关的双向传播特性,以及HF通信感兴趣的单向特性。所报告的调查主要基于使用澳大利亚中部的JINDALEE雷达系统以及位于1250公里范围内的正交极化中继器进行的测量。此外,已经对传播和散射过程进行了数学建模,以验证和扩展实验结果。

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