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Kestrel: a low-cost scatterometer mission to provide global marine winds

机译:红est:低成本散射仪任务,提供全球海洋风

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Abstract: Satlantic and Orbital Sciences Corporation have developed a concept for a novel satellite scatterometer mission designed to retrieve the global marine wind fields on a daily basis. Using a constellation of 5 - 8 small satellites in low earth orbit, each equipped with a Ku-band scatterometer, ocean basin wide winds could be observed synoptically on time scales consistent with 12 hour weather forecasts. Traditional approaches to design of marine wind scatterometers have been based on the concept of providing a swath, e.g., 500 km wide for ERS-1, which produces bands of dense (25 km spacing, 50 km resolution) observations over the oceans. The observation frequency varies according to repeat cycles, orbit phasing and latitude. On the other hand, global forecast models generally have grids at the same or lower resolution, but evenly spaced. The mismatch in the measured fields with those of the models has reduced the utility of using satellite derived winds for operational data assimilation. The present concept is based on the premise of sampling the winds on a scale more consistent with the current generation of medium term forecast models. The observations would be assimilated into these models, and would provide more stable solutions or model states on which to provide forecasts. The scatterometers are designed to be scanning, pencil beam systems, configured with three beams looking to each side. The scanning is carried out in a fashion that allows a patch on the ocean to be observed at 4 different azimuthal angles, thus providing good resolution of directional ambiguity. Data processing is very simple, avoiding range gating or Doppler processing. The resulting downlink data rates are also low enough to allow the design of a simple, low-cost ground segment that would be designed for ease of assimilation of the global wind fields into operational models in near to real-time. !3
机译:摘要:卫星和轨道科学公司开发了一种新型卫星散射仪任务的概念,该任务旨在每天检索全球海洋风场。使用低地轨道上的5-8个小型卫星星座,每个卫星都配有Ku波段散射仪,可以在与12小时天气预报一致的时间尺度上对海盆大风进行观测。设计海洋风散射仪的传统方法是基于为ERS-1提供例如500 km宽的条带的概念,该条带会在海洋上产生密集的观测带(间隔25 km,分辨率50 km)。观测频率根据重复周期,轨道相位和纬度而变化。另一方面,全局预测模型通常具有相同或较低分辨率但间隔均匀的网格。测量场与模型场的不匹配减少了使用卫星衍生风进行业务数据同化的实用性。本概念是基于对风进行采样的前提,该尺度与当前的中期预测模型更一致。观测值将被同化为这些模型,并将提供更稳定的解决方案或模型状态以提供预测。散射仪设计为扫描的笔形光束系统,配置为每面都具有三个光束。扫描的方式允许以4个不同的方位角观察海洋上的斑块,从而提供良好的方向歧义分辨率。数据处理非常简单,避免了距离选通或多普勒处理。产生的下行链路数据速率也足够低,以允许设计一个简单,低成本的地面部分,该部分的设计目的是易于将全球风场几乎实时地吸收到运营模型中。 !3

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