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An effective method for the detection of trace species demonstrated using the MetOp Infrared Atmospheric Sounding Interferometer

机译:MetOp红外大气探测干涉仪证明了一种检测痕量物质的有效方法

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摘要

Fast and reliable methods for the detection of atmospheric trace species are needed for near-real-time applications including volcanic hazard avoidance. One common approach using hyperspectral instruments is to measure the difference in brightness temperature between a small number of target sensitive and background channels to determine the presence of the target species. Although fast and robust, current brightness temperature difference methods do not fully exploit the spectral range and resolution of hyperspectral instruments, and the noise associated with the measurements remains high. In this paper, we describe a way to make full use of the spectral information from hyperspectral sounders allowing the presence of the target species to be determined with much better sensitivity in near-real-time if required. The technique is demonstrated using the MetOp Infrared Atmospheric Sounding Interferometer considering two case studies: (a) the detection of sulphur dioxide from the eruption of the Kasatochi volcano in Alaska in August 2008, and (b) the detection of ammonia emissions related to agriculture over Southern Asia in May 2008. The performance of this method is compared against that of existing brightness temperature difference methods. It is found that the sensitivity of the detection of these trace species is improved by up to an order of magnitude.
机译:对于包括火山危险规避在内的近实时应用,需要一种快速,可靠的方法来检测大气痕量物种。使用高光谱仪器的一种常见方法是测量少量目标敏感通道和背景通道之间的亮度温度差异,以确定目标物种的存在。尽管快速而稳健,但是当前的亮度温差方法无法充分利用高光谱仪器的光谱范围和分辨率,并且与测量相关的噪声仍然很高。在本文中,我们描述了一种充分利用来自高光谱测深仪的光谱信息的方法,可以根据需要以近乎实时的更好的灵敏度确定目标物种的存在。结合两个案例研究,使用MetOp红外大气探测仪演示了该技术:(a)从2008年8月在阿拉斯加的Kasatochi火山喷发中检测出二氧化硫,以及(b)与于2008年5月在南亚进行。此方法的性能与现有亮度温差方法的性能进行了比较。发现这些痕量物质的检测灵敏度提高了一个数量级。

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