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首页> 外文期刊>Atmospheric Measurement Techniques >Validation, comparison, and integration of GOCI, AHI, MODIS, MISR, and VIIRS aerosol optical depth over East Asia during the 2016 KORUS-AQ campaign
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Validation, comparison, and integration of GOCI, AHI, MODIS, MISR, and VIIRS aerosol optical depth over East Asia during the 2016 KORUS-AQ campaign

机译:2016年KORUS-AQ运动期间,GOCI,AHI,MODIS,MISR和VIIRS气雾光学深度的验证,比较和集成在东亚的竞争中

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Recently launched multichannel geostationary Earth orbit (GEO) satellite sensors, such as the Geostationary Ocean Color Imager (GOCI) and the Advanced Himawari Imager (AHI), provide aerosol products over East Asia with high accuracy, which enables the monitoring of rapid diurnal variations and the transboundary transport of aerosols. Most aerosol studies to date have used low Earth orbit (LEO) satellite sensors, such as the Moderate Resolution Imaging Spectroradiometer (MODIS) and the Multi-angle Imaging Spectroradiometer (MISR), with a maximum of one or two overpass daylight times per day from midlatitudes to low latitudes. Thus, the demand for new GEO observations with high temporal resolution and improved accuracy has been significant. In this study the latest versions of aerosol optical depth (AOD) products from three LEO sensors – MODIS (Dark Target, Deep Blue, and MAIAC), MISR, and the Visible/Infrared Imager Radiometer Suite (VIIRS), along with two GEO sensors (GOCI and AHI), are validated, compared, and integrated for a period during the Korea–United States Air Quality Study (KORUS-AQ) field campaign from 1?May to 12?June?2016 over East Asia. The AOD products analyzed here generally have high accuracy with high R (0.84–0.93) and low RMSE (0.12–0.17), but their error characteristics differ according to the use of several different surface-reflectance estimation methods. High-accuracy near-real-time GOCI and AHI measurements facilitate the detection of rapid AOD changes, such as smoke aerosol transport from Russia to Japan on 18–21?May 2016, heavy pollution transport from China to the Korean Peninsula on 25?May?2016, and local emission transport from the Seoul Metropolitan Area to the Yellow Sea in South Korea on 5?June?2016. These high-temporal-resolution GEO measurements result in more representative daily AOD values and make a greater contribution to a combined daily AOD product assembled by median value selection with a 0.5°×0.5° grid resolution. The combined AOD is spatially continuous and has a greater number of pixels with high accuracy (fraction within expected error range of 0.61) than individual products. This study characterizes aerosol measurements from LEO and GEO satellites currently in operation over East Asia, and the results presented here can be used to evaluate satellite measurement bias and air quality models.
机译:最近推出的Multichinel Geostationary Earth轨道(Geo)卫星传感器,例如地球静止海洋彩色成像仪(Goci)和先进的Himawari Imager(AHI),以高精度为东亚提供气溶胶产品,使得能够监测快速昼夜变化和气溶胶的越境运输。迄今为止最多的气溶胶研究已经使用了低地轨道(LEO)卫星传感器,例如中度分辨率成像光谱仪(MODIS)和多角度成像光谱仪(MISR),最大每天一个或两个立交桥白天中期到低纬度。因此,对具有高时间分辨率和提高准确度的新地理观测的需求具有重要意义。在本研究中,来自三个Leo传感器的最新版本的气溶胶光学深度(AOD)产品 - Modis(黑暗目标,深蓝色和毛泽动),MISR和可见/红外成像仪透射仪套件(VIIRs)以及两个地理传感器(GOCI和AHI),被验证,比较,并在韩国美国空气质量研究(KORUS-AQ)田野活动中的一段时间内综合(KORUS-AQ)野外活动,从1中开始?5月12日?6月?2016年在东亚。这里分析的AOD产品通常具有高r(0.84-0.93)和低RMSE(0.12-0.17)的高精度,但它们的误差特性根据多种不同的表面反射率估计方法的使用而不同。高精度近代GOCI和AHI测量有助于检测快速AOD的变化,例如18-21的俄罗斯对日本的烟雾气溶胶运输?2016年5月,从中国到朝鲜半岛的重量污染运输25岁?五月?2016年,韩国首尔大都市区的地方排放运输5?六月?2016年。这些高时分辨率的地理测量结果导致更多代表性的日常AOD值,并对由0.5°×0.5°栅格分辨率的中值选择组装的组装的组合的每日AOD产品进行更大的贡献。组合AOD在空间连续并且具有比单个产品高精度的高精度像素(预期误差范围内的分数)。本研究表征了目前在东亚运营的Leo和Geo卫星的气溶胶测量,这里提供的结果可用于评估卫星测量偏差和空气质量模型。

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