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Surface-based Ku- and Ka-band polarimetric radar for sea ice studies

机译:基于表面的KU和KA波段偏振雷达海冰研究

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To improve our understanding of how snow properties influence sea ice thickness retrievals from presently operational and upcoming satellite radar altimeter missions, as well as to investigate the potential for combining dual frequencies to simultaneously map snow depth and sea ice thickness, a new, surface-based, fully polarimetric Ku- and Ka-band radar (KuKa radar) was built and deployed during the 2019–2020 year-long MOSAiC international Arctic drift expedition. This instrument, built to operate both as an altimeter (stare mode) and as a scatterometer (scan mode), provided the first in situ Ku- and Ka-band dual-frequency radar observations from autumn freeze-up through midwinter and covering newly formed ice in leads and first-year and second-year ice floes. Data gathered in the altimeter mode will be used to investigate the potential for estimating snow depth as the difference between dominant radar scattering horizons in the Ka- and Ku-band data. In the scatterometer mode, the Ku- and Ka-band radars operated under a wide range of azimuth and incidence angles, continuously assessing changes in the polarimetric radar backscatter and derived polarimetric parameters, as snow properties varied under varying atmospheric conditions. These observations allow for characterizing radar backscatter responses to changes in atmospheric and surface geophysical conditions. In this paper, we describe the KuKa radar, illustrate examples of its data and demonstrate their potential for these investigations.
机译:提高我们对雪地特性如何影响海冰厚度从目前的运营和即将到来的卫星雷达高度计任务的理解,以及研究双频率与同时映射雪深和海冰厚度,新的表面的可能性在2019-2020年的马赛克国际北极漂移探险期间建造和部署了完全偏振的KU和KA波段雷达(Kuka Radar)。该仪器,作为高度计(凝视模式)和作为散射计(扫描模式)操作的仪器,提供了来自秋天冻结的第一个原位KU和KA频段双频雷达观测,通过中间冬季和覆盖新形成冰和第一年和第二年的冰絮凝。在高度计模式中收集的数据将用于调查估算雪深度作为KA和Ku频带数据中主要雷达散射视野之间的差异的可能性。在散射仪模式下,KU和KA波段雷达在宽范围的方位角和入射角下操作,连续评估偏振雷达背散射频和衍生极性参数的变化,因为在不同的大气条件下变化。这些观察结果允许表征雷达反散响应对大气和表面地球物理条件的变化。在本文中,我们描述了Kuka雷达,说明了其数据的例子,并证明了他们对这些调查的潜力。
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