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首页> 外文期刊>International journal of antennas and propagation >Phase Pattern Calibration for Interferometric Applications in Spaceborne SAR Systems
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Phase Pattern Calibration for Interferometric Applications in Spaceborne SAR Systems

机译:星载SAR系统中干涉测量应用的相位模式校准

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摘要

SAR is a widely used technique to acquire images for geoscience and earth observation applications. Active phased array antennas are commonly used in spaceborne SAR systems. For certain modes and applications, it is necessary to know the phase behavior of these phased array antennas. For applications utilizing the different polarization channels for interferometry, the phase difference between the polarizations needs to be calibrated very accurately as it is the main evaluation parameter. Also for single-pass interferometric missions, the difference between the two antennas in terms of phase gradients is of major importance. This paper demonstrates for the first time the usage of phase patterns in an operational interferometric SAR mission. It describes why these phase patterns are required and how they are used to fulfill the different goals of the missions. Then, the mathematical model to derive the phase of the antenna patterns is shown. Finally, the paper explains how the antenna patterns are calibrated in order to minimize their residual errors and describes in detail the measurements performed for this calibration and verification.
机译:SAR是一种广泛用于地球科学和地球观测应用的图像采集技术。有源相控阵天线通常用于星载SAR系统。对于某些模式和应用,有必要了解这些相控阵天线的相位行为。对于利用不同偏振通道进行干涉测量的应用,由于偏振之间的相位差是主要的评估参数,因此需要非常精确地校准。同样对于单程干涉测量任务,两个天线之间在相位梯度方面的差异也非常重要。本文首次演示了在干涉型SAR任务中使用相位模式的方法。它描述了为什么需要这些阶段模式以及如何将其用于实现任务的不同目标。然后,示出了导出天线方向图的相位的数学模型。最后,本文解释了如何对天线方向图进行校准以最大程度地减少其残留误差,并详细介绍了为此校准和验证执行的测量。

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