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首页> 外文期刊>Journal of Quantitative Spectroscopy & Radiative Transfer >Tropospheric ozone retrieval from thermal infrared nadir satellite measurements: Towards more adaptability of the constraint using a self-adapting regularization
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Tropospheric ozone retrieval from thermal infrared nadir satellite measurements: Towards more adaptability of the constraint using a self-adapting regularization

机译:来自热红外Nadir卫星测量的对流层臭氧检索:使用自适应正规化来实现约束的更适应性

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We developed a Self-Adapting Constraint Retrieval Scheme (SACRS) to retrieve ozone profiles from nadir infrared satellite measurements. In this algorithm, the constraint is variable in altitude and adapted automatically for each individual measurement. The algorithm is tested on synthetic observations representing the future IASI-NG satellite observations and considering either ozonesonde measurements or chemistry-transport model ozone simulations to represent the true ozone (pseudo-reality). The ozone retrievals are evaluated mainly for the troposphere with a specific focus on the lower troposphere between the surface and 6 km. Compared to a previous algorithm based on a fixed constraint retrieval scheme (FCRS), the biases, correlation and error estimates are improved with the SACRS. The bias is reduced by 40% and the correlation coefficient increases from 0.72 to 0.80. The SACRS algorithm also leads to an enhanced sensitivity in the lower troposphere with degrees of freedom for signal up to 0.83, increased by 11% compared to the FCRS. The SACRS performs especially well where current algorithms usually fail, namely for polar and tropical air masses. The bias is reduced from 8.6% to 0.5% in the troposphere (surface-9 km) when considering polar cases and from 24.4% to 10.1% in the upper troposphere - lower troposphere column (12-18 km) in the tropics. (C) 2019 Elsevier Ltd. All rights reserved.
机译:我们开发了一种自适应约束检索方案(萨胜地),以检索来自Nadir红外卫星测量的臭氧配置文件。在该算法中,约束在高度中是可变的,并且为每个单独的测量自动调整。该算法对代表未来IASI-NG卫星观测的合成观察,并考虑臭氧测量或化学传输模型臭氧模拟来代表真正的臭氧(伪现实)。臭氧检索主要针对对流层进行对流层,具体关注表面和6公里的较低的对流层。与基于固定约束检索方案(FCR)的先前的算法相比,萨克斯改进了偏差,相关性和误差估计。偏差减少40%,相关系数从0.72增加到0.80。恐怖算法还导致较低对流层中的灵敏度增强,信号自由度高达0.83,与FCR相比增加了11%。萨克斯特别好,在当前算法通常发生故障的情况下,即用于极性和热带空气群众。当考虑极性病例和上层对流层柱(12-18km)的极地情况下,在对流层(表面-9 km)中,偏差从对流层(表面-9 km)的8.6%降至0.5% - 在热带地区的较低层压层(12-18公里)。 (c)2019年elestvier有限公司保留所有权利。

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