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Statistical study of the spectral broadening of skywave signals backscattered by the sea surface: application to RMS wave height measurement with a skywave radar

机译:海面后向散射的天波信号频谱展宽的统计研究:在天波雷达的RMS波高测量中的应用

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摘要

HF skywave signals backscattered by the sea surface are studied on a large set of data (more than 30 h of 64 independent signals) to identify the sources of the broadening of the first-order spectral line. Using high-quality signals reflected by sporadic E ionospheric layers, the natural broadening due to sea-scattering effects has been scaled to about 3/100 Hz. When the signals propagate via F layer, the total broadening due to ionospheric effects is similar in magnitude and can be attributed to two causes. The first, due to frequency modulation effects, which can be identified and corrected, scales on average to 1/100 Hz. The second, called unresolved ionospheric effects, scales on average to 2/100 Hz and is probably due to the spatial variation of the ionospheric Doppler within the ionospheric control volume. Since they are greatly variable with time and space, the influence of these unresolved ionospheric effects can be reduced by sorting spectra, according to the value of the equivalent spectral width, before averaging. Using such sorting and correcting the signals for the ionospheric frequency modulation, 70% of the considered set of data are usable to measure the root mean square (RMS) wave height.
机译:对海面向后散射的HF天波信号进行了大量数据研究(64个独立信号中的30小时以上),以识别一阶光谱线变宽的来源。使用由零星E电离层反射的高质量信号,由于海散射效应而导致的自然展宽已缩放到大约3/100 Hz。当信号通过F层传播时,由于电离层效应而引起的总展宽幅度相似,可以归因于两个原因。首先,由于可以识别和校正的频率调制效应,平均缩放到1/100 Hz。第二个现象称为未解决的电离层效应,平均缩放至2/100 Hz,这可能是由于电离层控制区内电离层多普勒的空间变化所致。由于它们随时间和空间变化很大,因此可以通过在平均之前根据等效光谱宽度的值对光谱进行分类来减少这些未解决的电离层效应的影响。通过使用这种分类和校正信号进行电离层频率调制,可以使用70%的数据集来测量均方根(RMS)波高。

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