首页> 外文期刊>Journal of Quantitative Spectroscopy & Radiative Transfer >Efficient radiative transfer simulations for a broadband infrared radiometer-Combining a weighted mean of representative frequencies approach with frequency selection by simulated annealing
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Efficient radiative transfer simulations for a broadband infrared radiometer-Combining a weighted mean of representative frequencies approach with frequency selection by simulated annealing

机译:宽带红外辐射计的有效辐射传递模拟-结合代表性频率方法的加权平均值和模拟退火的频率选择

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摘要

We present a method to efficiently simulate the measurements of a broadband infrared instrument. The High Resolution Infrared Radiation Sounder (HIRS) instrument is used as example to illustrate the method. The method uses two basic ideas. Firstly, the channel radiance can be approximated by a weighted mean of the radiance at some representative frequencies, where the weights can be determined by linear regression. Secondly, a near-optimal set of representative frequencies can be found by simulated annealing. The paper does not only describe and analyze the method, it also describes how the method was used to derive optimized frequency grids for the HIRS instruments on the satellites TIROS N, NOAA 6-19, and Metop A. The grids and weights as well as the optimization algorithm itself are openly available under a GNU public license.
机译:我们提出一种有效地模拟宽带红外仪器的测量方法。以高分辨率红外辐射探测器(HIRS)为例来说明该方法。该方法使用两个基本思想。首先,可以通过在某些代表性频率下的辐射加权平均值来近似信道辐射,其中权重可以通过线性回归确定。其次,可以通过模拟退火找到一组近似最佳的代表频率。本文不仅描述和分析该方法,还描述了如何使用该方法为TIROS N,NOAA 6-19和Metop A卫星上的HIRS仪器推导优化的频率网格。网格和权重以及优化算法本身可以在GNU公共许可证下公开获得。

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