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High-resolution measurements with a spaceborne pencil-beam scatterometer using combined range/Doppler discrimination techniques

机译:使用组合的距离/多普勒鉴别技术的星载笔形散射仪进行高分辨率测量

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Conically scanning pencil-beam scatterometer systems, such as the SeaWinds radar, constitute an important class of instruments for spaceborne climate observation. In addition to ocean winds, scatterometer data are being applied to a wide range of land and cryospheric applications. A key issue for future scatterometer missions is improved spatial resolution. Pencil-beam scatterometers to date have been real-aperture systems where only range discrimination is used, resulting in a relatively coarse resolution of approximately 25 km. In this paper, the addition of Doppler discrimination techniques is proposed to meet the need for higher resolution. The unique issues associated with the simultaneous application of range and Doppler processing to a conically scanning radar are addressed, and expressions for the theoretical measurement performance of such a system are derived. Important differences with side-looking imaging radars, which also may employ Doppler techniques, are highlighted. Conceptual design examples based on scatterometer missions of current interest are provided to illustrate this new high-resolution scatterometer approach. It is shown that spatial resolution of pencil-beam scatterometer systems can be improved by an order of magnitude by utilizing combined range/Doppler discrimination techniques, while maintaining the wide-swath and constant incidence angle needed for many geophysical measurements.
机译:圆锥形扫描笔束散射仪系统(例如SeaWinds雷达)构成了用于星载气候观测的一类重要仪器。除海风外,散射计数据还被广泛应用于陆地和冰冻圈应用。未来散射仪任务的关键问题是提高空间分辨率。迄今为止,笔形光束散射仪已成为仅使用距离判别的实孔径系统,导致相对较粗的分辨率约为25 km。在本文中,提出了多普勒识别技术的补充,以满足更高分辨率的需求。解决了与在锥形扫描雷达上同时应用距离和多普勒处理相关的独特问题,并推导了这种系统的理论测量性能表达式。与侧视成像雷达的重要区别也得到了强调,后者也可能采用多普勒技术。提供了基于当前关注的散射仪任务的概念设计示例,以说明此新的高分辨率散射仪方法。结果表明,利用组合的距离/多普勒判别技术,可以将笔形光束散射仪系统的空间分辨率提高一个数量级,同时保持许多地球物理测量所需的广角和恒定入射角。

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