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Characterization and correction of spectral distortions induced by microvibrations onboard the GOSAT Fourier transform spectrometer

机译:GOSAT傅里叶变换光谱仪上微振动引起的光谱失真的表征和校正

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摘要

Microvibrations onboard greenhouse gases observing satellite (GOSAT) cause scan speed variations in the TANSO Fourier transform spectrometer. The associated periodic sampling errors generate ghost features in O_2 A-band spectra, where surface pressure and aerosol properties are retrieved to determine the optical path through the atmosphere. A correction algorithm has been developed to re-compute the interferograms at equally spaced sampling intervals. The key is to determine iteratively the amplitude and phase of sinusoidal perturbations with predetermined frequencies to minimize the magnitude of the out-of-band ghosts artifacts after correction of the sampling grid. This correction algorithm drastically reduces errors in retrieved surface pressure and improves agreement with ground-based observations.
机译:温室气体观测卫星(GOSAT)上的微振动会导致TANSO傅里叶变换光谱仪的扫描速度发生变化。相关的周期性采样误差会在O_2 A波段光谱中产生幻影特征,在该光谱中,将获取表面压力和气溶胶特性,以确定通过大气的光路。已经开发出一种校正算法,以等距采样间隔重新计算干涉图。关键是迭代确定具有预定频率的正弦波扰动的幅度和相位,以最小化校正采样网格后的带外重影伪影的大小。该校正算法可大大减少检索到的表面压力中的误差,并提高与地面观测的一致性。

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