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Ocean-wave imaging by synthetic-aperture radar: results from the SIR-B experiment in the N.E. Atlantic

机译:合成孔径雷达对海浪进行成像:N.E.的SIR-B实验结果大西洋

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摘要

Waveheight spectra were extracted from synthetic-aperture radar (SAR) images close to a number of wave-measuring buoys, and the results of radar and in situ measurements were compared as a test of wave-imaging theory. SAR and buoy spectra of waves traveling close to the radar range direction were in good quantitative agreement, with any discrepancies probably attributable to the processing technique. However, SAR estimates of the amplitude of azimuth-traveling waves were very much lower than buoy-derived values. This cannot be accounted for by appealing to nonlinear imaging by the velocity-bunching mechanism, or by velocity smearing, calculating the scene coherence time from the available buoy data. Rather, the scene coherent time must be reduced by a factor of about two, to within the range 0.022-0.027 s. This result highlights a lack of knowledge of scatterer motions and lifetimes on the sea surface.
机译:从靠近多个测量浮标的合成孔径雷达(SAR)图像中提取波高光谱,并比较了雷达和现场测量的结果,作为对波成像理论的检验。接近雷达测距方向的波的SAR和浮标光谱在定量上有很好的一致性,任何差异都可能归因于处理技术。但是,SAR对方位角行波幅度的估计远低于浮标值。这不能通过利用速度聚集机制吸引非线性成像或通过速度涂抹来从可用浮标数据计算场景相干时间来解决。而是,场景相干时间必须减少大约两倍,以在0.022-0.027 s的范围内。该结果表明,缺乏对海面散射运动和寿命的了解。

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