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Rapidly updated hyperspectra sounding and imaging data for severe storm prediction

机译:快速更新的高光谱探测和成像数据,可用于严重风暴预测

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Several studies have shown that a geostationary hyperspectral imager/sounder can provide the most significant value increase in short term, regional numerical prediction weather models over a range of other options. In 1998, the Geostationary Imaging Fourier Transform Spectrometer (GIFTS) proposal was selected by NASA as the New Millennium Earth Observation 3 program over several other geostationary instrument development proposals. After the EO3 GIFTS flight demonstration program was changed to an Engineering Development Unit (EDU) due to funding limitations by one of the partners, the EDU was subjected to flight-like thermal vacuum calibration and testing and successfully validated the breakthrough technologies needed to make a successful observatory. After several government stops and starts, only EUMETSAT's Meteosat Third Generation (MTG-S) sounder is in operational development. Recently, a commercial partnership has been formed to fill the significant data gap. AsiaSat has partnered with GeoMetWatch (GMW) to fund the development and launch of the Sounding and Tracking Observatory for Regional Meteorology (STORM™) sensor, a derivative of the Geosynchronous Imaging Fourier Transform Spectrometer (GIFTS) EDU that was designed, built, and tested by Utah State University (USU). STORM_(TM) combines advanced technologies to observe surface thermal properties, atmospheric weather, and chemistry variables in four dimensions to provide high vertical resolution temperature and moisture sounding information, with the fourth dimension (time) provided by the geosynchronous satellite platform ability to measure a location as often as desired. STORM_(TM) will enhance the polar orbiting imaging and sounding measurements by providing: (1) a direct measure of moisture flux and altitude-resolved water vapor and cloud tracer winds throughout the troposphere, (2) an observation of the time varying atmospheric thermodynamics associated with storm system development, and (3) the transport of tropospheric pollutant gases. The AsiaSat/GMW partnership will host the first STORM_(TM) sensor on their AsiaSat 9 telecommunications satellite at 122 E over the Asia Pacific area. GMW's business plan is to sell the unique STORM data and data products to countries and companies in the satellite coverage area. GMW plans to place 6 STORM_(TM) sensors on geostationary telecommunications satellites to provide global hyperspectral sounding and imaging data. Utah State University's Advanced Weather Systems Laboratory (AWS) will build the sensors for GMW.
机译:多项研究表明,对地静止的高光谱成像仪/声纳可以在一系列其他选择的短期,区域数值预报天气模型中提供最大的增值。 1998年,对地静止成像傅里叶变换光谱仪(GIFTS)提案被NASA选为“新千年地球观测3”计划,而不是其他几个对地静止仪器开发提案。由于合作伙伴之一的资金限制,将EO3 GIFTS飞行演示计划更改为工程开发部门(EDU)之后,EDU进行了类似飞行的热真空校准和测试,并成功验证了制造飞行器所需的突破性技术。成功的天文台。在几个政府停止和启动之后,只有EUMETSAT的Meteosat第三代(MTG-S)测深仪正在运行中。最近,已经建立了商业合作伙伴关系以填补巨大的数据空白。 AsiaSat与GeoMetWatch(GMW)合作,为区域气象探测和跟踪天文台(STORM™)传感器的开发和启动提供了资助,该传感器是地球同步傅里叶变换光谱仪(GIFTS)EDU的衍生产品,经过设计,制造和测试犹他州立大学(USU)。 STORM_(TM)结合了先进的技术,可在四个维度上观察表面热性质,大气天气和化学变量,以提供高的垂直分辨率温度和湿度探测信息,而第四维度(时间)则由地球同步卫星平台提供,可以测量所需的位置。 STORM_(TM)将通过提供:(1)直接测量整个对流层的水汽通量和海拔高度分辨的水汽和云层示踪剂风,(2)观察随时间变化的大气热力学来增强极地轨道成像和测深测量与风暴系统的发展有关,以及(3)对流层污染物气体的运输。 AsiaSat / GMW合作伙伴关系将在其亚太地区122 E的AsiaSat 9电信卫星上托管第一个STORM_(TM)传感器。 GMW的商业计划是向卫星覆盖区域内的国家和公司出售独特的STORM数据和数据产品。 GMW计划在对地静止电信卫星上放置6个STORM_(TM)传感器,以提供全球高光谱测深和成像数据。犹他州立大学的高级天气系统实验室(AWS)将为GMW制造传感器。

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