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A High-Frequency Surface Wave Radar Ionospheric Clutter Model for Mixed-Path Propagation With the Second-Order Sea Scattering

机译:具有二阶海散射混合路径传播的高频表面波雷达电离层杂波模型

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摘要

A theoretical second-order monostatic high-frequency radar power model is derived for the case of mixed-path ionosphere-ocean propagation. First, the general form of the received electric field is investigated by considering the ionospheric reflection and the second-order sea scattering, which involves both electromagnetic and hydrodynamic contributions. Then, this field is inversely Fourier transformed to the time domain, and a pulsed source is incorporated. Subsequently, the second-order received power model is developed by assuming that the ionospheric reflection coefficient and the ocean surface can be described as Fourier series whose coefficients are random variables. In order to investigate the power spectrum of the mixed-path propagation and its relative intensity to that of the surface propagation under a variety of ionospheric conditions and sea states, a normalized power is simulated.
机译:推导了混合路径电离层-海洋传播情况下的理论二阶单基地高频雷达功率模型。首先,通过考虑电离层反射和二次海散射来研究接收电场的一般形式,这涉及电磁和水动力两个方面。然后,将该场逆傅立叶逆变换到时域,并加入脉冲源。随后,通过假设电离层反射系数和海洋表面可以描述为系数是随机变量的傅里叶级数,来建立二阶接收功率模型。为了研究在各种电离层条件和海况下混合路径传播的功率谱及其相对于表面传播的强度,模拟了归一化功率。

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