A simulation tool for assessing the influence of atmospheric turbulence in a Media Calibration System

A. Graziani, P. Tortora, A. Martellucci, G. Elgered, M. Mercolino, P. Jarlemark
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引用次数: 1

Abstract

Turbulence is an important effect for different applications including different aspects of electromagnetic propagation in the atmosphere, especially for frequencies in the microwave part of the spectrum. Our parameter of interest is an integrated effect, namely the propagation delay of a signal propagating through the Earth's atmosphere to a receiver on the ground. A simulation method has been implemented in order to predict the statistics of atmospheric turbulence. For systems where calibration for the wet delay is done by means of radiometric measurements there is an uncalibrated remainder of the variability due to imperfections of the method: (1) the radiometer location, which may not be identical to the location of the receiving antenna that is subject to calibration, (2) a pointing offset on the sky, and (3) the radiometer beam that may sense another volume of the air than does the original signal. The size of the remainder depends on the assumptions made about the atmospheric variability when the instrument is calibrated. The analysis shows that the overall performance of the system to a significant level depends on the uncertainty in the true range of variation for the turbulence strength parameter Cn2.
一种评估介质校准系统中大气湍流影响的模拟工具
湍流是不同应用的重要影响,包括电磁在大气中传播的不同方面,特别是在频谱的微波部分的频率。我们感兴趣的参数是一个综合效应,即信号通过地球大气层传播到地面接收器的传播延迟。为了预测大气湍流的统计量,采用了一种模拟方法。对于通过辐射测量来校准湿延迟的系统,由于方法的缺陷,存在未校准的剩余可变性:(1)辐射计的位置可能与需要校准的接收天线的位置不相同,(2)天空上的指向偏移,以及(3)辐射计波束可能感知到比原始信号更多的空气体积。余量的大小取决于仪器校准时对大气变异性所做的假设。分析表明,系统的整体性能在很大程度上取决于湍流强度参数Cn2真实变化范围的不确定性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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