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The second-order Rytov approximation and residual error in dual-frequency satellite navigation systems

机译:双频卫星导航系统中的二阶Rytov逼近和残差

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The second-order Rytov approximation has been used to determine ionospheric corrections for the phase path up to third order. We show the transition of the derived expressions to previous results obtained within the ray approximation using the second-order approximation of perturbation theory by solving the eikonal equation. The resulting equation for the phase path is used to determine the residual ionospheric first-, second- and third-order errors of a dual-frequency navigation system, with diffraction effects taken into account. Formulas are derived for the biases and variances of these errors, and these formulas are analyzed and modeled for a turbulent ionosphere. The modeling results show that the third-order error that is determined by random irregularities can be dominant in the residual errors. In particular, the role of random irregularities is enhanced for small elevation angles. Furthermore, in the case of small angles the role of diffraction effects increases. It is pointed out that a need to pass on to diffraction formulas arises when the Fresnel radius exceeds the inner scale of turbulence.
机译:二阶Rytov逼近已用于确定直至三阶相位路径的电离层校正。我们通过求解eikonal方程,显示了使用微扰理论的二阶近似在射线近似内获得的导出表达式到先前结果的过渡。相路径的所得方程式用于确定双频导航系统的电离层残留一阶,二阶和三阶误差,并考虑了衍射效应。推导了这些误差的偏差和方差的公式,并针对湍流电离层对这些公式进行了分析和建模。建模结果表明,由随机不规则性确定的三阶误差在残余误差中可能占主导地位。特别是,对于小仰角,随机不规则的作用得到增强。此外,在小角度的情况下,衍射效应的作用增加。要指出的是,当菲涅耳半径超过湍流的内部尺度时,就需要继续采用衍射公式。

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