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Determining characteristics of HF communications links using SuperDARN

机译:使用SuperDARN确定HF通信链路的特征

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Space weather effects can strongly influence high-frequency (HF) communications by changing the ionospheric environment through which the radio waves propagate. Since many systems utilize HF communications, the ability to make real-time assessments of propagation conditions is an important part of space weather monitoring systems. In this paper, we present new techniques for measuring high-latitude HF communications link parameters using data from SuperDARN radars. These techniques use ground-scatter returns to define the variation in skip distance with frequency. From these data, the maximum usable frequency (MUF) as a function of range is determined and ionospheric critical frequencies are estimated. These calculations are made in near-real-time and the results are made available on the World Wide Web. F-region critical frequencies calculated using this method show good agreement with ionosonde data.Key words. Ionosphere (active experiments; instruments and techniques) – Radio science (ionospheric propagation)
机译:空间天气影响可以通过改变无线电波传播通过的电离层环境来强烈影响高频(HF)通信。由于许多系统利用HF通信,因此能够实时评估传播条件是空间天气监视系统的重要组成部分。在本文中,我们介绍了使用SuperDARN雷达数据测量高纬度HF通信链路参数的新技术。这些技术使用地面散射回波来定义跳跃距离随频率的变化。根据这些数据,确定最大可用频率(MUF)作为范围的函数,并估算电离层临界频率。这些计算几乎是实时进行的,其结果可以在万维网上获得。用这种方法计算的F区临界频率与离子探空仪数据显示出良好的一致性。 关键词。 电离层(主动实验;仪器和技术)–无线电科学(电离层传播)

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