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Analysis and Modelling of Multi-Channel Millimetric Wave Propagation Measurements in a Tropical Littoral Environment

机译:热带沿海环境中多通道毫米波传播测量的分析和建模

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Anomalous propagation of microwave and millimetric radiation in the surface boundary layer makes assessment of radio wave systems difficult and subject to significant error due the variability of meteorological parameters. The validation of models relies on trials that involve ships moving with sensors recording meteorological parameters, on paths where coordinating radio link and radar experiments are operating. The Tropical Air-Sea Propagation Study (TAPS) held near Lucinda North Queensland was such a study. This paper presents an analysis of microwave and millimetric wave (9, 17 and 35 GHz) transmit-receive link measurements recorded during TAPS for the period when BPSK modulated waveforms were being transmitted to ranges well beyond the radar horizon. The radio wave propagation measurements described are used to investigate the suitability of using Fourier-Split-Step 2-D parabolic equation methods for modelling microwave and millimetric propagation in sea surface environments. The limitations of these methods used for predicting wave propagation are demonstrated.
机译:微波和毫米波辐射在表面边界层中的异常传播使无线电波系统的评估变得困难,并且由于气象参数的可变性而导致重大误差。模型的验证依赖于试验,该试验包括在装有协调无线电链路和雷达实验的路径上,船上装有记录气象参数的传感器。在北昆士兰州卢辛达附近举行的热带海-海洋传播研究(TAPS)就是这样的研究。本文介绍了在TAPS期间记录的微波和毫米波(9、17和35 GHz)发射-接收链路测量结果的分析,这段时间内BPSK调制波形被发射到远远超出雷达视距的范围。所描述的无线电波传播测量结果用于研究使用傅里叶-分步-二维抛物线方程方法对海面环境中的微波和毫米波传播进行建模的适用性。证明了这些用于预测波传播的方法的局限性。

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