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GOMOS one-step retrieval algorithm

机译:GOMOS一步检索算法

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Global Ozone Monitoring by Occultation of Stars (GOMOS) is a satellite instrument onboard the ENVISAT platform that was in operation during 2002-2012. During these years, GOMOS observed about 880000 vertical profiles of ozone, NO_2, NO_3 and aerosols. The GOMOS measurement principle is relatively simple based on the stellar-occultation technique. In this paper, we present an alternative retrieval algorithm for processing the GOMOS measurements. The presented algorithm is based on the so-called one-step approach, where both the spectral and the vertical inversions are executed simultaneously. This approach has several attractive features. In particular, the one-step approach allows a better use of the smoothness prior information and, unlike in the operative algorithm, the prior given to one specie affects the other species too. This feature is critical when going near the detection limit, especially in the upper troposphere lower stratosphere (UTLS) region. The main challenge in the GOMOS one-step algorithm is to find the correct smoothness priors for the different species at different altitudes. In this paper, we give a technical description of the one-step retrieval algorithm and discuss the differences between this and the operative algorithm. In the case study part of this paper, we compare the one-step and the operative ozone retrievals in Arctic region during the exceptional ozone-depletion conditions in spring 2011. We show that the quality of the ozone profiles can be improved by introducing the one-step algorithm. The improvement is drastic in the lower stratosphere at 15-20 km altitude.
机译:全球星空掩星监测系统(GOMOS)是ENVISAT平台上的卫星仪器,该平台于2002-2012年期间投入运行。在这些年中,GOMOS观测到了大约880000个臭氧,NO_2,NO_3和气溶胶的垂直剖面。基于恒星掩星技术,GOMOS测量原理相对简单。在本文中,我们提出了一种替代的检索算法,用于处理GOMOS测量。所提出的算法基于所谓的一步法,其中频谱和垂直反演都同时执行。这种方法具有几个吸引人的特征。特别地,单步方法允许更好地使用平滑度先验信息,并且与可操作算法不同,给予一个物种的先验也会影响其他物种。当接近检测极限时,此功能至关重要,尤其是在对流层较低的平流层(UTLS)区域中。 GOMOS一步算法的主要挑战是为不同海拔高度的不同物种找到正确的平滑度先验。在本文中,我们对单步检索算法进行了技术描述,并讨论了该算法与可操作算法之间的区别。在本文的案例研究部分中,我们比较了2011年春季在特殊的臭氧消耗条件下北极地区的一步法和有效臭氧回收。我们表明,通过引入一种方法可以改善臭氧剖面的质量步算法。在15-20 km高度的平流层下部,这种改善是巨大的。

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