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基于数值模拟大气环境预测海上微波传播损耗
引用本文:王红光,韩杰,王波,吴振森.基于数值模拟大气环境预测海上微波传播损耗[J].系统工程与电子技术,2012,34(3):457-461.
作者姓名:王红光  韩杰  王波  吴振森
作者单位:1. 西安电子科技大学理学院, 陕西 西安 710071; 2. 中国电波传播研究所电波环境特性及模化技术国防科技重点实验室, 山东 青岛 266107
摘    要:针对数值天气预报模式应用于电磁波传播预测的性能,比较数值模拟和无线电探空剖面,计算并对比以两者为输入的路径损耗。对于近地面1 km大气修正折射率梯度,两者间误差均值和标准差分别为4.4 M/km和16.6 M/km。通过在典型频点上的传播计算,发现频率较低或距离较近时,路径传播损耗误差较小,随着频率或距离的增加,误差逐渐增大。结果表明了数值天气预报技术在海上电波传播特性预测中的适用性。

关 键 词:折射指数梯度  第五代中尺度数值模式  抛物方程  路径传播损耗

Numerical modeling of atmospheric environment for microwave propagation loss prediction over the sea surface
WANG Hong-guang,HAN Jie,WANG Bo,WU Zhen-sen.Numerical modeling of atmospheric environment for microwave propagation loss prediction over the sea surface[J].System Engineering and Electronics,2012,34(3):457-461.
Authors:WANG Hong-guang  HAN Jie  WANG Bo  WU Zhen-sen
Institution:1. School of Science, Xidian University, Xi’an 710071, China;   2.National Key Laboratory of Electromagnetic Environment, China Research Institute of Radiowave Propagation, Qingdao 266107, China
Abstract:In view of the performance of numerical weather prediction(NWP) for electromagnetic wave propagation,comparisons are made between simulated and radiosonde atmospheric profiles,as well as path propagation loss based on inputs of the refractivity profiles from the numerical weather mode and radiosonde.For the refractivity gradients of the lowest 1 km from the surface,the mean error and the error standard deviation are 4.4 M-unit/km and 16.6 M-unit/km respectively.Propagation characteristics of typical microwave frequency points show the error of the predicted path propagation losses remains small at low frequency or short range,and it increases with an increase of frequency or range.The results show the applicability of NWP for electromagnetic wave propagation prediction in the marine environment.
Keywords:refractivity gradient  fifth-generation mesoscale model(MM5)  parabolic equation  path propagation loss
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