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Quantification of uncertainties in OCO-2 measurements of XCO2:simulations and linear error analysis

机译:XCO2 OCO-2测量中不确定性的量化:仿真和线性误差分析

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We present an analysis of uncertainties in global measurements of the column averaged dry-air mole fraction of CO2 (XCO2) by the NASA Orbiting Carbon Observatory-2 (OCO-2). The analysis is based on our best estimates for uncertainties in the OCO-2 operational algorithm and its inputs, and uses simulated spectra calculated for the actual flight and sounding geometry, with measured atmospheric analyses. The simulations are calculated for land nadir and ocean glint observations. We include errors in measurement, smoothing, interference, and forward model parameters. All types of error are combined to estimate the uncertainty in XCO2 from single soundings, before any attempt at bias correction has been made. From these results we also estimate the variable error which differs between soundings, to infer the error in the difference of XCO2 between any two soundings. The most important error sources are aerosol interference, spectroscopy, and instrument calibration. Aerosol is the largest source of variable error. Spectroscopy and calibration, although they are themselves fixed error sources, also produce important variable errors in XCO2. Net variable errors are usually ?1?ppm over ocean and ~?0.5–2.0 ppm over land. The total error due to all sources is ~?1.5–3.5?ppm over land and ~?1.5–2.5?ppm over ocean.
机译:我们通过NASA轨道碳观察组-2(OCO-2)对CO 2(XCO2)的柱平均干气摩尔分数的全局测量的不确定性分析。分析基于我们在OCO-2操作算法及其输入中的不确定性的最佳估计,并使用针对实际飞行和探测几何形状计算的模拟光谱,具有测量的大气分析。仿真是针对土地Nadir和海洋闪光观测计算的。我们在测量,平滑,干扰和前向模型参数中包含错误。在已经进行了任何偏差校正的尝试之前,组合所有类型的错误以估计来自单个探测的XCO2中的不确定性。从这些结果来看,我们还估计了探测之间不同的变量误差,以推断出任何两个探测之间XCO2差异的误差。最重要的错误来源是气溶胶干扰,光谱学和仪器校准。气溶胶是最大的变量误差源。光谱学和校准,虽然它们本身是固定的误差源,但在XCO2中也会产生重要的变量错误。净变量错误通常是?1?PPM OVER OVER OVER OVER OVER OVER OVER OVER〜0.5-2.0 PPM。由于所有来源的总误差是〜?1.5-3.5?PPM在土地上,〜?1.5-2.5?PPM在海洋上。
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