Offshore Electromagnetic Wave Propagation Loss Model Based on Ray Tracing Method

Zhenjia Chen, Lihui Wang, Ran Chen
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Abstract

Wireless communication technology supports the safe implementation of maritime operations. The offshore electromagnetic wave propagation loss model is of great significance to the study of offshore wireless communication channels. The process of electromagnetic wave propagation on the sea can be expressed as a double-path model. Based on the ray tracing method, electromagnetic waves are regarded as numerous rays propagating from the source point. The rays are affected by the curvature of the earth and the refractive index of the air and will bend when propagating in the air. Rays incident on the rough sea surface will be reflected and absorbed. According to the wind speed and wind direction parameters, combined with the stochastic process method, the rough sea surface geometric model can be estimated. According to the salinity and temperature of the sea surface, the reflection coefficient and absorption coefficient of the rays can be determined. According to the tilt angle attitude of the transmitting antenna and the antenna pattern, the initial energy of the rays of different radiation directions can be determined. Offshore electromagnetic wave propagation loss model based on ray tracing method, research on receiving ball size design and offshore electromagnetic spectrum sensing method. The offshore electromagnetic wave propagation loss model proposed in this paper is based on the antenna attitude and rough sea surface model, which can more accurately describe the state of the offshore environment. Computational electromagnetics methods can effectively improve the estimation accuracy of the spatial distribution of offshore electromagnetic spectrum. According to the judgment of the rough sea surface geometric model and the position of the signal source to quickly estimate the effective ray, the ray tracing method is optimized and accelerated, and the speed of the model calculation is improved. Based on the ray tracing method and the rough sea surface model, an offshore electromagnetic wave propagation loss model is established. Combined with the auxiliary parameters of the sensor environment, it effectively describes the influence of the dynamic sea surface on the propagation of radio signals.
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基于光线追踪法的近海电磁波传播损耗模型
无线通信技术支持海上作业的安全实施。海上电磁波传播损耗模型对研究海上无线通信信道具有重要意义。电磁波在海面上的传播过程可以用双路径模型来表示。基于射线追踪法,电磁波被看作是从源点传播的无数条射线。光线受到地球曲率和空气折射率的影响,在空气中传播时会发生弯曲。入射到波涛汹涌的海面上的光线会被反射和吸收。根据风速和风向参数,结合随机过程方法,可以估计出粗糙海面的几何模型。根据海水表面的盐度和温度,可以确定光线的反射系数和吸收系数。根据发射天线的倾斜角度姿态和天线方向图,可以确定不同辐射方向射线的初始能量。基于射线追踪法的海上电磁波传播损耗模型,研究接收球尺寸设计和海上电磁频谱感知方法。本文提出的近海电磁波传播损耗模型基于天线姿态和粗糙海面模型,能更准确地描述近海环境的状态。计算电磁学方法可以有效地提高近海电磁波谱空间分布的估计精度。根据粗糙海面几何模型的判断和信号源位置快速估计有效射线,优化和加速了射线追踪方法,提高了模型计算速度。基于射线追踪法和粗糙海面模型,建立了近海电磁波传播损耗模型。结合传感器环境的辅助参数,有效地描述了动态海面对无线电信号传播的影响。
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