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Wavefront Correction of Ionospherically Propagated HF Radio Waves Using Covariance Matching Techniques

机译:使用协方差匹配技术对电离层传播的HF无线电波进行波前校正

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High Frequency (HF) radio waves propagating in the ionospheric random inhomogeneous media exhibit a spatial nonlinearity wavefront which may limit the performance of conventional high-resolution methods for HF sky wave radar systems. In this paper, the spatial correlation function of wavefront is theoretically derived on condition that the radio waves propagate through the ionospheric structure containing irregularities. With this function, the influence of wavefront distortions on the array covariance matrix can be quantitatively described with the spatial coherence matrix, which is characterized with the coherence loss parameter. Therefore, the problem of wavefront correction is recast as the determination of coherence loss parameter and this is solved by the covariance matching (CM) technique. The effectiveness of the proposed method is evaluated both by the simulated and real radar data. It is shown numerically that an improved direction of arrival (DOA) estimation performance can be achieved with the corrected array covariance matrix.
机译:在电离层随机非均匀介质中传播的高频(HF)无线电波呈现出空间非线性波阵面,这可能会限制用于HF天波的常规高分辨率方法的性能雷达系统。本文从理论上推导了波前的空间相关函数,条件是无线电波通过包含不规则性的电离层结构传播。使用此功能,可以用空间相干矩阵来定量描述波前畸变对阵列协方差矩阵的影响,其特征在于相干损耗参数。因此,将波前校正的问题重铸为相干损耗参数的确定,并通过协方差匹配(CM)技术解决了这一问题。仿真和真实雷达数据都对所提方法的有效性进行了评估。数值显示,使用校正后的数组协方差矩阵可以提高到达方向(DOA)的估计性能。

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