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首页> 外文期刊>IEEE Transactions on Geoscience and Remote Sensing >Backscattering measurements of alpine snowcovers at 5.3 and 35 GHz
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Backscattering measurements of alpine snowcovers at 5.3 and 35 GHz

机译:5.3和35 GHz的高山积雪的反向散射测量

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This paper describes two network-analyzer (NA)-based scatterometers at 5.3 (C-band) and 35 GHz (Ka-band) as well as snowcover measurements made in the Swiss and Austrian Alps between December 1993 and January 1996. First, the setup and the mode of operation of the scatterometers are discussed. Both instruments measure the backscattering coefficients /spl gamma/ at hh, /spl nu//spl nu/, /spl nu/h, and /spl nu/h polarizations and for incidence angles ranging from 0 to 70/spl deg/. The accuracy of /spl gamma/ is generally better than /spl plusmn/1.8 dB, and the scatterometers are well suited for signature studies of natural surfaces. During the two years, the authors performed many backscattering measurements of natural, strongly layered snowcovers and the authors investigated relationships between /spl gamma/ and physical parameters of the snowcover. All measurements were collected in a signature catalogue. They report on results at 40/spl deg/ incidence angle. They found that the combined use of active sensors at 5.3 and 35 GHz allows the discrimination of various snowcover situations, if multitemporal information is available. In addition, they observed a relationship of /spl gamma/ at 5.3 GHz with the integrated column height of liquid water and dependencies of /spl gamma/ at 35 GHz on the height of the dry snow, on the volumetric liquid water content at the snow surface, and on the thickness of the refrozen crust at the snow surface.
机译:本文介绍了两个基于网络分析仪(NA)的5.3(C波段)和35 GHz(Ka波段)散射仪,以及1993年12月至1996年1月在瑞士和奥地利阿尔卑斯山进行的积雪测量。讨论了散射仪的设置和操作模式。两种仪器都在hh,/ spl nu // spl nu /,/ spl nu / h和/ spl nu / h极化以及入射角范围为0至70 / spl deg /的情况下测量后向散射系数/ spl gamma /。 / spl gamma /的精度通常优于/ spl plusmn / 1.8 dB,并且散射仪非常适合于自然表面的特征研究。在过去的两年中,作者对自然的,强烈分层的积雪进行了多次反向散射测量,并研究了/ spl gamma /与积雪的物理参数之间的关系。所有测量值均收集在签名目录中。他们以40 / spl度/入射角报告结果。他们发现,如果可以获得多时相信息,则在5.3和35 GHz频率下有源传感器的组合使用可以区分各种积雪情况。此外,他们观察到5.3 GHz时/ spl gamma /与液态水的总柱高之间的关系,以及35 GHz时/ spl gamma /与干雪高度,雪中液态液态水含量的相关性地表,以及雪地表层的再冻硬壳厚度。

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