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On the estimation of quasi-instantaneous frequency modulation of HF signals propagated through the ionosphere

机译:关于通过电离层传播的HF信号的准瞬时频率调制的估计

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Three methods for estimating the ionospheric frequency modulation of HF skywave signals are compared. In the first one, the instantaneous frequency is obtained by taking the time derivative of the phase of the signal, whereas, in the two other methods, autoregressive modeling using Burg and Marple algorithms is performed. High-quality signals propagated via a sporadic E-layer and backscattered by the sea surface are digitally perturbed with a known frequency modulation, and the efficiencies of the methods in recovering the perturbation is compared. The influence of the weighting of the estimator and of the number of statistical averages on the quality of the estimates is considered. It is found that, for a number of averages greater than four, the standard deviations of the difference between the estimated and the theoretical perturbation are of the same order of magnitude for the three methods, but that Marple's algorithm yields a less biased estimate. The wave height obtained after removing the artificial modulation is recovered with an accuracy of about 10%.
机译:比较了估计HF天波信号电离层频率调制的三种方法。在第一种方法中,瞬时频率是通过获取信号相位的时间导数获得的,而在其他两种方法中,则使用Burg和Marple算法进行自回归建模。经由零星E层传播并被海面反向散射的高质量信号会以已知的频率调制进行数字化扰动,并比较了恢复扰动方法的效率。考虑估计量的加权和统计平均值的数量对估计质量的影响。我们发现,对于多个大于4的平均值,三种方法的估计扰动和理论扰动之差的标准偏差在相同的数量级,但是Marple算法产生的偏差较小。去除人工调制后获得的波高以大约10%的精度恢复。

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