动态海面背景下无线电导航定位系统精度分析及电离层补偿

Jialin Shi, Zusheng Jin, Jianxuan Li, Anxia Jiao
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引用次数: 0

摘要

本文首先分析了基于解析法建立的电离层损失模型,建立了以非线性海谱为理论基础的船舶在波浪中摇摆的海模型,然后采用数值方法建立了波浪随风吹动的典型三维模型。并将其转化为船舶纵向和横向摆动的数学模型,利用高频逼近法计算海面无线电导航信号的幅值和相位的贡献,最后通过对仿真数据的后处理和统计分析,得到了海上无线电导航信号的补偿策略和具体方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Accuracy Analysis and Ionospheric Compensation of Radio Navigation and Positioning System under Dynamic Sea Surface Background
This paper first analyzes the ionosphere loss model is established based on analytic method, a nonlinear sea spectrum as the theoretical foundation of ship swaying in the waves of the sea model is set up, and then the numerical method is adopted to establish the waves with the wind blowing the typical three-dimensional model, and converted into a mathematical model of ship longitudinal and transverse swing and using high frequency approximation method to calculate the surface of radio navigation signal amplitude and phase of contribution, finally through the simulation data post-processing and statistical analysis, got the Marine radio navigation signals compensation strategy and specific methods.
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