首页> 外文会议>IEEE International Geoscience and Remote Sensing Symposium >Relating co-polarization phase difference at L-band over land ice to the structure of snow and firn layers
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Relating co-polarization phase difference at L-band over land ice to the structure of snow and firn layers

机译:将陆地冰L波段的共极化相位差与雪层和火成层的结构联系起来

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Spaceborne synthetic aperture radars (SARs) represent a powerful tool to perform cryospheric observations due to their high spatial resolution and capability to acquire data during the winter time. Especially at lower frequencies, SAR signals penetrate beneath the glaciers surface through the shallow snow cover, interacting with surface as well as sub-surface features. This makes the scattering scenario very complex and the interpretation of SAR backscattering from glaciers and ice sheets not straightforward. In the case of polarimetric SARs (PolSAR), the understanding of polarization phase differences represent one of the main open issues. In this paper, a physical model is employed to relate co-polarization HH-VV phase difference (co-pol phase) to structural and dielectric properties of snow and firn which characterize the first meters of glaciers subsurface. Modelled co-pol phase values are compared to values measured in experimental airborne L-band (1.3 GHz) SAR data, acquired over the Austfonna ice-cap, in Svalbard, in spring 2005 and 2007. A set of ground measurements is also exploited to properly set up the model and to validate the results. Finally, an interpretation of co-pol phase temporal variations over the period 2005–2007 is attempted based on the proposed model.
机译:星载合成孔径雷达(SAR)代表了执行冰冻圈观测的强大工具,因为它们具有较高的空间分辨率和在冬季采集数据的能力。特别是在较低频率下,SAR信号会通过浅雪覆盖层穿透冰川表面下方,与表面以及地下特征相互作用。这使散射情况变得非常复杂,并且冰川和冰盖对SAR反向散射的解释并不简单。对于极化SAR(PolSAR),对极化相位差的理解是主要的开放问题之一。在本文中,采用物理模型将共极化HH-VV相差(co-pol相)与雪和冷杉的结构和介电特性相关联,这是冰川地下第一米的特征。将模拟的共极化相位值与2005年春季和2007年春季在斯瓦尔巴特群岛的Austfonna冰帽上获取的实验性机载L波段(1.3 GHz)SAR数据中测得的值进行比较。正确设置模型并验证结果。最后,尝试基于提出的模型来解释2005-2007年期间的共极化相位时间变化。

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