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Wind-wave effect on ATI-SAR measurements of ocean surface currents in the Baltic Sea

机译:风波对波罗的海海表电流ATI-SAR测量的影响

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Along-Track Interferometric (ATI) SAR has demonstrated through several studies a capability to detect ocean surface currents. One of the most challenging problems in ocean surface current retrieval using SAR is the removal of the wind-wave contribution. The phase difference provided by ATI-SAR technique is directly related to the radial velocity of the moving ocean surface. In order to infer the current-only velocity from the total phase the wind-wave contribution need to be removed. This is achieved by simulation of SAR Doppler spectra from given wind fields. This paper investigates the effect of the local wind on ATI-SAR phase. A study case, where the backscatter modulation is dominated by the wind variation, is illustrated using TanDEM-X data over the Baltic Sea. It is shown that retrieving high resolution winds from SAR data using an empirical wind model and using the retrieved winds as input to the SAR imaging model improves the simulated SAR signatures.
机译:沿轨干涉测量(ATI)SAR通过多项研究证明了检测海洋表面洋流的能力。使用SAR进行海面电流检索时最具挑战性的问题之一是消除风波的影响。 ATI-SAR技术提供的相位差与海面运动的径向速度直接相关。为了从总相位中推断出仅电流的速度,需要去除风波的影响。这是通过模拟给定风场中的SAR多普勒频谱来实现的。本文研究了局部风对ATI-SAR相位的影响。使用波罗的海的TanDEM-X数据说明了一个研究案例,其中后向散射调制受风的影响。结果表明,使用经验风模型从SAR数据中检索高分辨率风并将检索到的风用作SAR成像模型的输入可以改善模拟SAR信号。

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