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Simulation and analysis of a multi-order imaging Fabry-Perot interferometer for the study of thermospheric winds and temperatures

机译:用于研究热层风和温度的多阶成像法布里-珀罗干涉仪的仿真和分析

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摘要

We describe an analysis procedure for estimating the thermospheric winds and temperatures from the multi-order two-dimensional (2D) interferograms produced by an imaging Fabry-Perot interferometer (FPI) as imaged by a CCD detector. We also present a forward model describing the 2D interferograms. To investigate the robustness and accuracy of the analysis, we perform several Monte Carlo simulations using this forward model for an FPI that has recently been developed and deployed to northeastern Brazil. The first simulation shows that a slight cross-contamination at high temperatures exists between neighboring orders in the interferogram, introducing a bias in the estimated temperatures and increasing errors in both the estimated temperatures and winds when each order is analyzed in full. The second simulation investigates how using less than an entire order in the analysis reduces the cross contamination observed in the first set of simulations, improving the accuracy of the estimated temperatures. The last simulation investigates the effect of the signal-to-noise ratio on the errors in the estimated parameters. It is shown that, for the specific FPI simulated in this study, a signal-to-noise ratio of 1.5 is required to obtain thermospheric wind errors of 5 m/s and temperature errors of 20 K.
机译:我们描述了一种分析程序,该程序用于从由CCD检测器成像的法布里-珀罗干涉仪(FPI)产生的多维二维(2D)干涉图中估算热层风和温度。我们还提出了描述2D干涉图的正向模型。为了调查分析的鲁棒性和准确性,我们使用此正向模型对FPI(最近已开发并部署到巴西东北部)执行了几个Monte Carlo模拟。第一次仿真显示,干涉图中相邻阶之间存在高温下的轻微交叉污染,从而在对每个阶进行全面分析时会导致估计温度出现偏差,并增加估计温度和风的误差。第二个模拟研究如何在分析中使用少于一个完整的顺序来减少在第一组模拟中观察到的交叉污染,从而提高估算温度的准确性。最后的仿真研究了信噪比对估计参数误差的影响。结果表明,对于本研究中模拟的特定FPI,要求获得1.5的信噪比才能获得5 m / s的热层风误差和20 K的温度误差。

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