卫星高光谱大气光谱法中的振铃效应介绍

Pierre Dussarrat, B. Theodore, D. Coppens, C. Standfuss, B. Tournier
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引用次数: 1

摘要

摘要近20年来,空间大气遥感光谱法已成为地球监测系统的一个关键组成部分:其大覆盖范围和deci-kelvin稳定性证明了其在天气预报、大气成分监测以及气候监测方面的有用性。因此,研究与此技术相关的错误的可能来源是至关重要的。其中之一就是所谓的“振铃误差”,当傅立叶变换光谱仪的仪器传输在光谱分辨率的尺度上发生变化时,就会出现这种误差。本文揭示了这种特殊类型的辐射不确定度的理论基础。在使用傅立叶变换光谱仪进行大气红外探测的背景下,评估了其对仪器参数的敏感性以及对辐射校准测量的影响。结果表明,这种误差是这种仪器的固有特征,在早期仪器中可以安全地忽略它,但在新一代仪器中必须考虑到它,因为它会导致辐射误差预算的显着退化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Introduction to the ringing effect in satellite hyperspectral atmospheric spectrometry
Abstract. Atmospheric remote spectrometry from space has become in the last 20 years a key component of the Earth monitoring system: their large coverage and deci-kelvin stability have demonstrated their usefulness for weather prediction, atmospheric composition monitoring as well as climate monitoring. It is thus critical to investigate the possible sources of errors associated to this technique. One of them is the so-called "ringing error" that appears in Fourier transform spectrometers when the instrument transmission varies at the scale of the spectral resolution. This paper exposes the theoretical basis of this particular type of radiometric uncertainty. Its sensitivity to instrumental parameters as well as the impact on the radiometrically calibrated measurements is assessed in the context of atmospheric infrared sounding using Fourier transform spectrometers. It is shown that this error is an intrinsic feature of such instruments that could safely be ignored in early-generation instruments but will have to be taken into account in the new generation ones as it can yield a significant degradation of the radiometric error budget.
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