首页> 外文期刊>Hydrology and Earth System Sciences Discussions >Potential of high-resolution detection and retrieval of precipitation fields from X-band spaceborne synthetic aperture radar over land
【24h】

Potential of high-resolution detection and retrieval of precipitation fields from X-band spaceborne synthetic aperture radar over land

机译:从陆地X频带星载合成孔径雷达的高分辨率检测和降水场的潜力

获取原文
           

摘要

X-band Synthetic Aperture Radars (X-SARs), able to image the Earth's surface at metric resolution, may provide a unique opportunity to measure rainfall over land with spatial resolution of about few hundred meters, due to the atmospheric moving-target degradation effects. This capability has become very appealing due to the recent launch of several X-SAR satellites, even though several remote sensing issues are still open. This work is devoted to: (i) explore the potential of X-band high-resolution detection and retrieval of rainfall fields from space using X-SAR signal backscattering amplitude and interferometric phase; (ii) evaluate the effects of spatial resolution degradation by precipitation and inhomogeneous beam filling when comparing to other satellite-based sensors. Our X-SAR analysis of precipitation effects has been carried out using both a TerraSAR-X (TSX) case study of Hurricane "Gustav" in 2008 over Mississippi (USA) and a COSMO-SkyMed (CSK) X-SAR case study of orographic rainfall over Central Italy in 2009. For the TSX case study the near-surface rain rate has been retrieved from the normalized radar cross section by means of a modified regression empirical algorithm (MREA). A relatively simple method to account for the geometric effect of X-SAR observation on estimated rainfall rate and first-order volumetric effects has been developed and applied. The TSX-retrieved rain fields have been compared to those estimated from the Next Generation Weather Radar (NEXRAD) in Mobile (AL, USA). The rainfall detection capability of X-SAR has been tested on the CSK case study using the repeat-pass coherence response and qualitatively comparing its signature with ground-based Mt. Midia C-band radar in central Italy. A numerical simulator to represent the effect of the spatial resolution and the antenna pattern of TRMM satellite Precipitation Radar (PR) and Microwave Imager (TMI), using high-resolution TSX-retrieved rain images, has been also set up in order to evaluate the rainfall beam filling phenomenon. As expected, the spatial average can modify the statistics of the high-resolution precipitation fields, strongly reducing its dynamics in a way non-linearly dependent on the rain rate local average value.
机译:能够以公制分辨率图像图像图像的X频段合成孔径雷达(X-SARS),可以提供独特的机会,以衡量降雨量,由于大气的移动目标降解效应,空间分辨率大约几百米的空间分辨率。由于近几X-SAR卫星的推出,这种能力已经非常有吸引力,尽管几个遥感问题仍然是开放的。这项工作致力于:(i)使用X-SAR信号反向散射幅度和干涉阶段探索X波段高分辨率检测和从空间检索降雨场的潜力; (ii)与其他卫星基于卫星传感器相比,评价沉淀和不均匀束填充的空间分辨率降解的影响。我们的X-SAR对降水效果的分析已经使用了2008年飓风“Gustav”的Terrasar-X(TSX)案例研究在Mississippi(USA)和宇宙蛇(CSK)X-SAR案例研究的地形在2009年的意大利中部降雨。对于TSX案例研究,通过修改的回归经验算法(MREA),从标准化的雷达横截面检索了近表面雨率。一种相对简单的方法,用于考虑X-SAR观察对估计降雨率和一阶体积效应的几何效果。将TSX检索到的雨田与来自移动(AL,USA)的下一代天气雷达(Nexrad)估计的那些进行了比较。 X-SAR的降雨量检测能力已经在CSK案例研究中测试了使用重复通过一致性响应和与地面MT.中部地基C波段雷达的签名进行了定性比较。用于表示空间分辨率和TRENNA卫星降水雷达(PR)和微波成像器(TMI)的天线图案的效果的数值模拟器已经建立了使用高分辨率TSX检索的雨水图像,以便评估降雨束填充现象。正如预期的那样,空间平均值可以修改高分辨率降水场的统计数据,强烈地以非线性地依赖于雨率局部平均值的方式强调其动态。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号