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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Orbiting Carbon Observatory: Inverse method and prospective error analysis
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Orbiting Carbon Observatory: Inverse method and prospective error analysis

机译:轨道碳观测卫星:逆方法潜在的误差分析

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The objective, design, and implementation of the OCO inverse method are presented. The inverse method is the algorithm which finds the profile-weighted mean mixing ratio, X CO2 , which best fits the measured spectrum, given a “forward model” which calculates the spectrum for a given atmospheric state, surface, and instrument properties. Minimizing bias among comparative values of X CO2 is a critical objective. The algorithm uses an “optimal,” maximum a posteriori inverse method, with weak a priori constraint, and employs a state vector containing atmospheric and surface properties expected to vary significantly between soundings. An extensive operational characterization and error analysis will be employed, producing quantities designed to aid atmospheric modelers in use of the OCO data. In particular, comparison to inverse models of surface CO2 flux will require use of the OCO column averaging kernel and a priori state vector. An off-line error analysis has also been developed for more detailed error studies, and its use is illustrated by prospective application to case studies of nadir observations in summer and winter at three sites. Uncertainties due to noise, geophysical variability, and spectroscopic parameters are considered in detail. At low and midlatitudes, the single-sounding errors due to these sources are expected to be ~0.7–0.8 ppm for high-sun conditions and ~1.5–2.5 ppm for low sun (winter). Errors from the same sources in semimonthly regional averages are predicted to be <1 ppm for all conditions.
机译:目标、设计和实现的OCO逆方法。方法是发现的算法profile-weighted意味着混合比,X二氧化碳最适合测量光谱,给出一个“前进模型”计算给定的频谱大气状态、表面和乐器属性。值X的二氧化碳是一个至关重要的目标。算法使用了一个“最优”,最大后验逆方法,先验约束较弱,和拥有一个包含大气状态向量和表面属性将有所不同调查之间的显著。操作特性和误差分析设计将采用,生产数量帮助OCO的大气建模者使用数据。表面CO2通量OCO将需要使用列平均内核和先验状态向量。为更详细的错误的研究开发其使用了潜在的应用在夏天最低点的案例研究观察和冬季三个网站。噪音,地球物理变化和光谱详细参数被认为是。情理之中,由于single-sounding错误这些资源将-0.8 ~ 0.7 ppm发现的条件和-2.5 ~ 1.5 ppm低太阳(冬天)。每半月一次地区平均预计< 1 ppm的所有条件。

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