Parallax Shift in GOES ABI Data

IF 0.8 Q4 METEOROLOGY & ATMOSPHERIC SCIENCES Journal of Operational Meteorology Pub Date : 2023-02-17 DOI:10.15191/nwajom.2023.1102.
Anthony C. Bernal Ayala, Jordan J. Gerth, T. Schmit, S. Lindstrom, James P. Nelson
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引用次数: 2

Abstract

A parallax shift is a displacement in the apparent navigated position of a feature that arises because of its perspective from the viewing platform and is also a function of the feature height. For Geostationary Operational Environmental Satellite (GOES) imagery, this shift is especially apparent away from the satellite subpoint. Users should understand the degree of this shift when combining GOES Advanced Baseline Imager (ABI) imagery with other data, such as radar and lightning. However, it can be challenging, especially at spatial resolutions around the cloud/storm scale. This article explores parallax displacement for both uniform and computed cloud-top heights. Parallax shift will be shown using two case studies. The first case is from 7 September 2021, in which northern Illinois hailstorms are examined using ground-based Level II NEXRAD radar data, GOES-16 ABI imagery, and Geostationary Lightning Mapper data. The second case, on 9 April 2021, examines an eruption of the La Soufrière volcano on St. Vincent from the differing perspectives of GOES16 and -17. The discussion of these cases will show how parallax is an apparent displacement that will vary depending on what satellites are used for observation, where the phenomenon is with respect to the satellite, and the height of the phenomenon being analyzed. Newer satellite instruments with finer spatial resolutions and improved georeferencing will maximize data usability at more extreme angles and require users to account for the accompanying enhanced parallax shift. Even at lesser angles, parallax displacement is an important consideration for many meteorological and other applications.
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GOES ABI数据中的视差偏移
视差偏移是由于特征从观察平台的视角而产生的特征的表观导航位置的位移,也是特征高度的函数。对于地球静止运行环境卫星(GOES)图像,这种变化在远离卫星亚点的地方尤为明显。当将GOES高级基线成像仪(ABI)图像与雷达和闪电等其他数据相结合时,用户应该了解这种转变的程度。然而,它可能具有挑战性,尤其是在云/风暴尺度周围的空间分辨率下。本文探讨了均匀云顶高度和计算云顶高度的视差位移。视差偏移将通过两个案例研究来显示。第一个案例发生在2021年9月7日,使用地面二级NEXRAD雷达数据、GOES-16 ABI图像和地球静止闪电测绘仪数据对伊利诺伊州北部的冰雹进行了检查。第二个案例发生在2021年4月9日,从GOES16和-17的不同角度考察了圣文森特的La Soufrière火山爆发。对这些情况的讨论将表明视差是一种视在位移,它将根据用于观测的卫星、现象相对于卫星的位置以及正在分析的现象的高度而变化。具有更精细空间分辨率和改进地理参考的新型卫星仪器将在更极端的角度最大限度地提高数据可用性,并要求用户考虑随之而来的增强视差偏移。即使在较小的角度下,视差位移也是许多气象和其他应用的重要考虑因素。
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来源期刊
Journal of Operational Meteorology
Journal of Operational Meteorology METEOROLOGY & ATMOSPHERIC SCIENCES-
CiteScore
2.40
自引率
0.00%
发文量
4
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