ProxyVis—A Proxy for Nighttime Visible Imagery Applicable to Geostationary Satellite Observations
作者:Galina Chirokova, John A. Knaff, Michael J. Brennan, Robert T. DeMaria, Monica Laureano Bozeman, Stephanie N. Stevenson, John L. Beven, Eric S. Blake, Alan Brammer, James W. Darlow, Mark DeMaria, Steven D. Miller, Christopher J. Slocum, Debra A. Molenar, Donald W. Hillger · 发表于:Weather and Forecasting · 年份:2023 · DOI:10.1175/waf-d-23-0038.1 · 被引用次数:9 · 研究领域:Infrared Target Detection Methodologies、Impact of Light on Environment and Health
Abstract Visible satellite imagery is widely used by operational weather forecast centers for tropical and extratropical cyclone analysis and marine forecasting. The absence of visible imagery at night can significantly degrade forecast capabilities, such as determining tropical cyclone center locations or tracking warm-topped convective clusters. This paper documents ProxyVis imagery, an infrared-based proxy for daytime visible imagery developed to address the lack of visible satellite imagery at night and the limitations of existing nighttime visible options. ProxyVis was trained on the VIIRS day/night band imagery at times close to the full moon using VIIRS IR channels with closely matching GOES - 16 / 17 / 18 , Himawari - 8 / 9 , and Meteosat - 9 / 10 / 11 channels. The final operational product applies the ProxyVis algorithms to geostationary satellite data and combines daytime visible and nighttime ProxyVis data to create full-disk animated GeoProxyVis imagery. The simple versions of the ProxyVis algorithm enable its generation from earlier GOES and Meteosat satellite imagery. ProxyVis offers significant improvement over existing operational products for tracking nighttime oceanic low-level clouds. Further, it is qualitatively similar to visible imagery for a wide range of backgrounds and synoptic conditions and phenomena, enabling forecasters to use it without special training. ProxyVis was first introduced to National Hurricane Center (NHC) operations in 2018 and was ...