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The effect of solar activity on the Doppler and multipath spread of HF signals received over paths oriented along the mid-latitude trough

机译:太阳活动对沿中纬度谷定向的路径上收到的HF信号的多普勒和多径传播的影响

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摘要

Measurements of the Doppler and delay spread associated with HF signals propagating along an oblique (1440 km) path tangential to the midlatitude ionospheric trough are presented for sunspot maximum and minimum. During the day, Doppler spread is independent of solar activity, but for winter and equinoctial nights, it is very much higher at sunspot maximum. The delay spread is also generally higher at sunspot maximum for all seasons and times of day. For sunspot minimum, measurements from a second, longer path (1800 km) are also presented. The observed Doppler and delay spreads are similar for both paths. Finally, a novel method of more accurately deriving the delay spread defined by the International Telecommunication Union (i.e., the largest delay spread including all modes that have a peak power within a user-defined threshold of that of the strongest mode) from Voice of America coverage analysis program (VOACAP) predictions is presented. For the first time, the predicted values are compared with the measured delay spreads and, while there is generally good agreement at sunspot minimum, the agreement at sunspot maximum tends to be poor because the behavior of the high-order ionospheric modes (e.g., 3F2) is not well predicted by VOACAP.
机译:提出了与沿中纬度电离层低谷相切的倾斜(1440 km)路径传播的HF信号相关的多普勒和时延扩展的测量值,用于太阳黑子的最大值和最小值。在白天,多普勒传播与太阳活动无关,但在冬季和等夜,在太阳黑子最高时,它的传播要高得多。通常在所有季节和一天中,在太阳黑子最高时,延迟传播通常也会更高。对于最小的黑子,还会显示第二条较长路径(1800公里)的测量值。对于两条路径,观察到的多普勒和延迟扩展都是相似的。最后,一种新方法可以更准确地从美国之音得出国际电信联盟定义的延迟扩展(即,最大延迟扩展包括峰值功率在用户定义的最强模式阈值之内的所有模式)介绍了覆盖分析程序(VOACAP)的预测。首次将预测值与测得的时延扩展进行比较,尽管通常在太阳黑子最小值处具有良好的一致性,但由于高阶电离层模式(例如3F2)的行为,太阳黑子最大值处的一致性往往较差)不能由VOACAP很好地预测。

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