首页> 外文会议>2015 Joint Conference of the IEEE International Frequency Control Symposium amp; European Frequency and Time Forum >Discovery of persistent ionospheric frequency shifts of a few Herz and impact on time and frequency transfer
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Discovery of persistent ionospheric frequency shifts of a few Herz and impact on time and frequency transfer

机译:发现电离层持续几赫兹的频移并影响时间和频率传输

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Unexpected frequency shifts and occasional splitting of short-wave Standard Frequency Signals into components with persistent frequency shifts of up to a Herz or so have been `discovered' using SDR receivers with milliHerz resolution. Such spurious signals have also been observed on AM carrier frequencies and DRM signals between ~1MHz and 25MHz. The frequency shifts are in general downwards like `Hubble' shifts but at times can be upwards, depending on the time of day and direction of the path around the earth. Shifted components in general correlate with the existence of an ionospheric propagation path. At some times an unwanted frequency shifted component can be stronger than the original carrier signal and then the Standard Frequency Signal cannot be used as an accurate reference frequency. There are also problems with inaccurate pirate standard frequency signal transmissions on some frequencies. Small short term, diurnal and seasonal frequency variations are being investigated as a possible method of detecting gravity waves.
机译:使用具有MilliHerz分辨率的SDR接收器“发现”了意想不到的频移,以及偶尔将短波标准频率信号分解为持续频移高达Herz左右的分量。在AM载波频率和〜1MHz至25MHz之间的DRM信号上也观察到了这种杂散信号。频率偏移通常像“哈勃”偏移一样向下,但有时可以向上偏移,具体取决于一天中的时间和围绕地球的路径的方向。偏移的分量通常与电离层传播路径的存在相关。在某些时候,不需要的频移分量会比原始载波信号更强,因此标准频率信号不能用作精确的参考频率。在某些频率上不正确的盗版标准频率信号传输也存在问题。目前正在研究短期,昼夜和季节性的频率变化,作为检测重力波的一种可能方法。

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