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Design Principles and Considerations for Spaceborne ATI SAR-Based Observations of Ocean Surface Velocity Vectors

机译:基于星载ATI SAR的海面速度矢量观测的设计原理和注意事项

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This paper presents a methodology to design a spaceborne dual-beam along-track synthetic aperture radar interferometer to retrieve ocean surface velocity vectors. All related aspects and necessary tradeoffs are identified and discussed or reviewed, respectively. This includes a review of the measurement principle and the relation between baseline and sensitivity, the relation between wind and radar backscatter, a discussion of the observation geometry, including the antenna concept, polarization diversity, and all main error contributions. The design methodology consists of a sensitivity-based derivation of explicit instrument requirements from scientific requirements. In turn, this derivation is based on a statistical model for the interferometric phase error. This allows a quantitative, well-grounded instrument design offering an additional degree of freedom to the approach, which we call “noise-equivalent-sigma-zero requirement space.” Crucial tradeoffs for the system design, such as the resolution, the number of independent looks, the minimum wind speed, and the coherence and ambiguities, are pointed out and discussed. Finally, this paper concludes with a single platform system concept operating in Ku-band, which provides the measurement quality needed to achieve a surface velocity estimation accuracy of 5 cm/s, 200-km swath coverage, for 4 × 4 km2 L2-product resolution and winds starting at 3 m/s.
机译:本文提出了一种方法,设计一种星载双波束沿径迹合成孔径雷达干涉仪,以检索海洋表面速度矢量。分别确定,讨论或审查所有相关方面和必要的权衡。其中包括对测量原理以及基线和灵敏度之间的关系,风与雷达反向散射之间的关系的回顾,对观测几何形状的讨论,包括天线概念,极化分集和所有主要误差贡献。设计方法包括基于灵敏度的科学要求中明确仪器要求的推导。反过来,该推导基于干涉相位误差的统计模型。这样就可以进行定量,良好接地的仪器设计,从而为该方法提供了更大的自由度,我们称之为“噪声等效-sigma-零需求空间”。指出并讨论了系统设计的关键权衡,例如分辨率,独立外观的数量,最小风速以及连贯性和歧义性。最后,本文以在Ku波段运行的单平台系统概念作为结束,该概念为4×4 km2 L2产品提供实现5 cm / s的表面速度估计精度,200 km覆盖范围所需的测量质量。分辨率和风速为3 m / s。

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