首页> 外文期刊>Radio Science >A comparison of MOF factors and frequency of optimum transmission bands observed using oblique-incidence sounders with sounder-updated PROPHET predictions for a one-month test in the continental United States during the geomagnetically active summer of 1982
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A comparison of MOF factors and frequency of optimum transmission bands observed using oblique-incidence sounders with sounder-updated PROPHET predictions for a one-month test in the continental United States during the geomagnetically active summer of 1982

机译:使用斜入射测深仪和测深仪更新的PROPHET预测观测到的MOF因子和最佳传输频带的频率进行比较,以进行1982年夏季在美国大陆进行的为期一个月的测试

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摘要

This paper compares several methods for predicting the frequency of optimum transmission (FOT) during periods of time when the geomagnetic field and the ionosphere are disturbed. The predictions will be made with a relatively simple ionospheric model (PROPHET) updated in near-real time with information from an oblique-incidence sounder operating on a different (control) path. Current and previous methods used to predict the FOT are examined along with a new technique which employs additional sounder information from the control path. The use of multipath reduction factors and CCIR-recommended FOT factors, derived for use with monthly predictions during undisturbed periods, are also examined for the near-real-time application with the simple model in the presence of a disturbed ionosphere. Predictions made using each method are compared to measured FOT data scaled from oblique-incidence ionograms gathered during a 29-day test in the continental United States during the geomagnetically active summer of 1982 Finally, a comparison is made with data taken during a 1-week test in the continental United States during the fall of 1984 when the ionosphere and geomagnetic field were not disturbed [Ap ≤ 24)
机译:本文比较了几种在地磁场和电离层受到干扰时预测最佳传输频率(FOT)的方法。预测将使用相对简单的电离层模型(PROPHET)进行,该模型将以来自在不同(控制)路径上运行的斜入射测深仪的信息进行近实时更新。目前正在研究用于预测FOT的当前方法和以前的方法,以及采用了来自控制路径的其他探测仪信息的新技术。还使用简单模型在电离层存在干扰的情况下,检查了多径减少因子和CCIR推荐的FOT因子的使用情况,这些因子用于在无扰动期间的月度预测中,用于近实时应用。将使用每种方法做出的预测与根据1982年夏季地磁活跃的29天试验在美国大陆上收集的斜入射电离图得出的实测FOT数据进行比较。最后,将其与在1周内采集的数据进行比较1984年秋季在美国大陆进行的电离层和地磁场不受干扰的测试[Ap≤24]

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