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On the response of polarimetric synthetic aperture radar signatures at 24-cm wavelength to sea ice thickness in Arctic leads

机译:极化铅合成孔径雷达信号在24厘米波长对北极铅中海冰厚度的响应

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We investigate observationally and theoretically the response of polarimetric backscattering at 24-cm wavelength to the thickness of Arctic sea ice in leads and first-year ice features. We employ backscattering data acquired by the Jet Propulsion Laboratory airborne synthetic aperture radar (SAR) during March 1988 in the Beaufort Sea, together with nearly simultaneous passive microwave imagery acquired by the U.S. Navy Ka band radiometric mapping system. We find that 24-cm copolar ratios and copolar phases vary strongly with apparent ice thickness. We observe copolar phase shifts between −10° and −50° (relative to multiyear ice phases) for new ice features in the imagery, as well as positive copolar phases in a first-year ice feature. Copolar ratios also vary with apparent thickness, from values larger than those expected theoretically for seawater to values slightly lower than those expected for thick ice. We derive a signature model based on scattering from a rough air/sea ice interface with realistic vertical profiles of brine volume and relative permittivity beneath. Model predictions for copolar ratios and phases show ice thickness-dependent variations consistent with those observed. We present simulation results showing that plausible ice thickness variations between pixels in a multilook average diminish, but do not eliminate, the signature response to thickness. This suggests that direct thickness estimation of sea ice in leads may be possible using polarimetric SAR at wavelengths of 24 cm or longer.
机译:我们观察和理论上调查在24厘米波长的极化反向散射对铅和第一年冰特征中北极海冰厚度的响应。我们使用1988年3月在波弗特海的喷气推进实验室机载合成孔径雷达(SAR)采集的反向散射数据以及美国海军Ka波段辐射测绘系统采集的几乎同时的无源微波图像。我们发现,24 cm的同极比和同相相对于表观冰厚变化很大。对于图像中的新冰特征,以及第一年冰特征中的正同相,我们观察到了-10°和-50°之间的相对极相移(相对于多年冰相)。同极比也随表观厚度而变化,从大于理论上对海水的期望值到略低于浓冰的期望值。我们基于粗糙的空气/海冰界面的散射得出一个签名模型,该散射模型具有现实的盐水体积和下方相对介电常数的垂直轮廓。同极化比率和相的模型预测表明,与冰厚有关的变化与观测到的一致。我们提供的模拟结果表明,在多视点平均像素之间的合理的冰层厚度变化会减小但不会消除对厚度的签名响应。这表明在24 cm或更长的波长下使用极化SAR可以直接估算铅中海冰的厚度。

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